`Technologies Group
`
`
`Department of Chemical Engineering
`JHE-136, McMaster University
`Hamilton, Ontario, Canada, L8S 4L7
`(905) 529 7070 ext. 27045
`peltonrh@mcmaster.ca
`www.papersci.mcmaster.ca
`
`
`
`Robert Pelton - Curriculum Vitae – Table of Contents
`Summary Positions, Achievements, and Education ................................................................................... 2(cid:1)
`Positions and Awards .............................................................................................................................. 2(cid:1)
`Some Achievements ................................................................................................................................ 2(cid:1)
`Education: ............................................................................................................................................... 5(cid:1)
`Employment History: .............................................................................................................................. 5(cid:1)
`Consulting; .............................................................................................................................................. 6(cid:1)
`Robert Pelton- Publication List ................................................................................................................... 6(cid:1)
`Publication Summary .............................................................................................................................. 6(cid:1)
`ISI Summary June 2017 H-index 47 ................................................................................................... 6(cid:1)
`Patents and Patent Applications ................................................................................................................ 30(cid:1)
`Robert Pelton’s Employees and Students ................................................................................................. 32(cid:1)
`Summary Since 1987 ............................................................................................................................ 32(cid:1)
`Current Research Students .................................................................................................................... 32(cid:1)
`Current Staff, PDFs and Visitors .......................................................................................................... 33(cid:1)
`M. Eng. and M. Sc. Student Theses and Employer (not necessarily current) .......................................... 33(cid:1)
`Ph.D. Students and Subsequent Employer ................................................................................................ 35(cid:1)
`Past Visiting Scientists and Sabbatical Visitors ........................................................................................ 36(cid:1)
`Post Doctoral Fellows ........................................................................................................................... 37(cid:1)
`Past Administrative and Full Time Research Staff ............................................................................... 38(cid:1)
`4th Year Project and Summer Students (supervisor) ............................................................................. 38(cid:1)
`Presentations by Robert Pelton ................................................................................................................. 40(cid:1)
`Invited Lectures and Seminars 1992- (329) ......................................................................................... 40(cid:1)
`Conference Presentations 1992- ........................................................................................................... 60(cid:1)
`Current Research Funding ........................................................................................................................ 74(cid:1)
`Pelton Group Funding Details .............................................................................................................. 74(cid:1)
`Past Legal Clients ..................................................................................................................................... 75(cid:1)
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`(cid:1)
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`1
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`Solenis v. Ecolab USA, IPR2016-01281, Exhibit 2019
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`•(cid:1) Professor: Department of Chemical Engineering, McMaster University.
`•(cid:1) Canada Research Chair in Interfacial Technologies.
`•(cid:1) Founding Director of McMaster Centre for Pulp and Paper Research.
`•(cid:1) Past Scientific Director (2005-2016) SENTINEL – The Bioactive Paper Network.
`•(cid:1) Associate Faculty Member of Chemistry Department.
`•(cid:1) Consultant, A number of industrial and legal clients.
`•(cid:1) Member, Review Committee of the Pulp and Paper Fundamental Research Society.
`•(cid:1) Member: Editorial advisory board for Langmuir, Cellulose, J. Wood Science.
`•(cid:1) Past Member: Scientific Advisory Board - Wallenberg Wood Science Center (2011-2016)
`•(cid:1) Past Member: Board of Governors, McMaster University 2914-2017)
`
`•(cid:1) 2013, TAPPI, Van den Akker Medal
`•(cid:1) 2012, Society of Chemical Industry, LeSueur Memorial Award
`•(cid:1) 2011, Fellow, Royal Society of Canada
`2010 Faculty of Engineering Research Achievement Award, McMaster University
`•
`•(cid:1) 2009 Macromolecular Science and Engineering Award, Chemical Institute of Canada.
`•(cid:1) TAPPI Fellow.
`•(cid:1) Winner, Derek Page award for the best paper in Journal Pulp Paper Science, 2005.
`•(cid:1) Winner, Jasper Mardon Memorial Prize for the best papermaking paper, 2002.
`•(cid:1) Winner, Synergy Award 1996, for best collaborations with industry (Dorset).
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`1.(cid:1) Invented poly(N-isopropylacrylamide) Microgels, 1986-
`I was the first researcher to prepare poly(N-isopropylacrylamide),
`NIPAM, microgels which form uniform colloidal suspensions of
`particles that display temperature sensitive swelling in water (Colloids
`and Surfaces, 20, 247-256 (1986)). This was a completely new material
`platform. At least 20 international research groups are currently
`working with poly(N-isopropylacrylamide) microgels exploring wide
`range of applications including: biosensors, controlled drug delivery
`vehicles, adhesion promoters, colloidal crystals, porous media
`templates, absorbents, tissue culture supports an so-on. In most cases
`temperature sensitivity is an integral part of the application. My review
`of this technology [Adv. Colloid Interface Sci., 2000, 1-33] has become my most cited paper with more
`than 1000 citations. An ISI search (March 2016) of the topic “isopropylacrylamide microgels” yields
`1374 citations with most of these papers describing some variation of the microgels invented by me.
`The field continues to grow with about 150 new papers and 5000 citations every year. I have published
`more than 50 microgel papers in my career and my group continues to use microgels as supports for
`bioactive molecules in bioactive inks (Su et al. 2008) and as components of model cellulosic adhesives
`(Wen et al. 2012).
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`2.(cid:1) Developed the Vision of Bioactive Paper, 2004-
`In 2001 I wrote a grant application for an Ontario Government funded In
`2001 I proposed “Water Treating Paper”, a new concept for small-scale
`water treatment in disaster situations. This idea has blossomed into what is
`now a well-defined vision we call Bioactive Paper, which is paper that will
`detect and deactivate pathogens. This vision gelled in the development of
`the successful SENTINEL Bioactive Paper NSERC strategic network
`(2005-2016), which I lead. The New York Times, Sunday Magazine Dec 9,
`2007 described the Sentinel Bioactive paper concept as one of the top 70
`ideas of the year in “The 7th Annual Year in Ideas”.
`
`As of March 2016 there are 175 SENTINEL funded publications (I coauthored 33) and 17 patents and
`patent applications (7 include me as a co-inventor). Although it is debatable who first recognized the
`potential of modern paper-based sensors leading to a renaissance in this field, Pelton at McMaster or
`Whitesides at Harvard, my group was first to publish (Su et al. 2008) by a few months and the field has
`dramatically grown with scores of research groups around the world.
`
`My 2009 review in TRAC-TRENDS in Analytical Chemistry has more than 200 ISI citations. The field
`is taking off. For example, there was a multiday symposium at Pacific Chem in 2015 on paper-based
`biosensors, a field I helped pioneer. McMaster University’s Bioactive Paper biosensor team, Profs
`Brennan, Filipe, Li and myself, have developed paper-based sensor prototypes that detect most of the
`common pathogenic bacteria, organo-phosphorous pesticides, some virus types and metal ions. Based on
`this success, more than 1/3 of the activities in McMaster's new Biomedical Engineering and Advanced
`Manufacturing research facility (BEAM) Fraunhofer Project Centre will be focused on biosensor
`development, including our agricultural biosensor development described herein.
`
`Glass
`
`Nanoparticle
`
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`3.(cid:1) Nanoparticle Flotation Collectors – A New Technology
`I proposed that hydrophobic nanoparticles will perform as
`flotation collectors and may offer advantages over traditional
`collectors based on small molecules. (245) With our industry
`partner Vale and the hard work of graduate students, we have
`demonstrated nano-scale polystyrene latex particles promote the
`mineral flotation, a key operation in virtually all mineral
`processing operations. We are currently optimizing the technology using combinatorial synthesis and
`high throughput screening (291,296). Patents have been filed and we have published 11 peer-reviewed
`publications. The foundation publications are a series of papers with my former PhD student Songtao
`Yang, as the lead author (245, 248, 250, 256, 266,267, 277, 281,291, 296). It is too early to identify the
`ultimate impact of this invention. However, with a wide variety of mining operations around the world
`with pressure to improve financial and environmental performance, I anticipate that specific applications
`in mineral flotation operations will be found. From a scientific perspective, there is little known about
`the behaviors of hydrophilic surfaces sparsely decorated with hydrophobic nanoparticles. Half of our
`Yang publications involve fundamental modeling aspects supported by model flotation and
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`micromechanical measurements. Ongoing work includes the use of Janus particles, the role of nano-
`scale ball milling, and high throughput screening of nanoparticle libraries made by click chemistry.
`
`4. A New Theory Predicting the Effects of Fillers on Paper Strength, 2005-2010
`Virtually all paper-based materials contain filler particle to improve
`optical and printing properties while lowering cost. However, the filler
`particles degrade mechanical properties and expensive strength
`enhancing polymers must be added to compensate. Until my work,
`there was no theoretical model or simple experimental test to identify
`the most effective strength enhancing polymers and the best way to
`add them. I developed both a new theory, which predicts the influence
`of filler size and shape on the mechanical properties of paper (li et al.
`2002) and an innovative delamination technique which was used to
`verify the theory.
`Our experimental technique involved laminating two wet, filler-free paper plies with a monolayer of
`filler particles between the two plies. Using this approach, we were able to compare placing the strength-
`enhancing polymer between the filler particle/cellulose joints with placing polymer on the
`cellulose/cellulose joints. This work was important because it showed that it is better to strengthen
`cellulose-cellulose joints, near the filler particles, as opposed to improving filler-cellulose adhesion. We
`were awarded the Jasper Mardon Memorial Prize for the best papermaking paper at the TAPPI
`Technology Summit in 2002.
`In subsequent work, we showed the key mechanisms by which polymers strengthen filled papers. We
`won the Derek Page Award for the Best Paper in the Journal of Pulp Paper Research in 2005. We
`published 5 peer-reviewed papers on this topic (Li et al. 2002, Xu et al. 2004, 2005a, 2005b, Chen et al.
`2005)
`
`5. Labile Polyelectrolytes a New Class of Polymers
`Electrically charged synthetic water-soluble polymers are traditionally classed as “strong” or “weak”
`polyelectrolytes. I have identified a new class we call “labile” because the weakly bonded charged
`groups easily detach from the polymer in response to subtle changes in solution. Our first publications
`on this topic have appeared in high impact journals [217], [218], and [226]. Alcon Laboratories and
`NSERC
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`Latex
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`fructose
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`Latex
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`
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`
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`HPG
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`Latex
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`Latex
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`O O
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`B-
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`HO
`HO=
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`New Insights into Wet Adhesion to Cellulose, 2005-
`
` paperboard materials. The core of the problem is poor adhesion
`between cellulose fibers in the presence of water. For the most
`challenging applications, paper is treated with polymeric resins, which
`partially maintain fiber-fiber adhesion in water. We have made a
`number of advancements on the development of improved wet-strength
`enhancing polymers including:
`
`1) We have developed a completely new way to measure wet cellulose
`adhesion based on the peel delamination force measurements (Kurosu
`et al. 2004);
`2) We have shown that TEMPO oxidized cellulose gives enhanced adhesion in the presence of
`polyvinylamine (PVAm), (Chen et al. 2002, DiFlavio et al. 2005);
`3) We have invented phenylboronic acid derivatives of polyvinylamine, the first polymer found that
`gives instantaneous wet adhesion to cellulose (Chen et al. 2006, US patent 7, 943, 713 B2). BASF, our
`industrial partner, is currently exploring the commercialization potential of this new family of polymers;
`and
`4) We have demonstrated theoretically and experimentally that microgel based adhesives are far more
`effective as papermaking wet-strength resins compared to linear polymers with the same chemical
`structures (Wen et al. 2012 a,b).
`Our microgel adhesive work was recognized with the TAPPI Van den Akker Medal for the best paper
`physics publication in 2012. The impact of this work was that it had a role in helping BASF promote its
`new polyvinylamine polymer platform first introduced in 2000. Because of our achievements they have
`funded our work continuously since 2002. In addition, our current project funded by Proctor & Gamble
`came about because of our achievements in the area of wet cellulose adhesion. In total I have published
`33 peer-reviewed papers, 1 patent and two patent applications in this area. Research funded by BASF
`and NSERC.
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`(cid:5)(cid:21)(cid:36)(cid:20)(cid:18)(cid:35)(cid:26)(cid:31)(cid:30)(cid:43)(cid:1)
`Ph.D. Bristol University
`M.Sc. U. of Guelph
`B.Sc. U. of Guelph
`
`Colloid Chemistry
`Chemistry
`Chemistry
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`1974-1976
`1971
`1967-1970
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`(cid:5)(cid:29)(cid:32)(cid:28)(cid:31)(cid:40)(cid:29)(cid:22)(cid:30)(cid:35)(cid:1)(cid:8)(cid:26)(cid:34)(cid:35)(cid:31)(cid:33)(cid:40)(cid:43)(cid:1)
`1990-present Professor, McMaster University
`1987-1990
`Associate Professor, McMaster University
`1984-1987
`Research Scientist
`Union Carbide, Tarrytown N.Y.
`1978-1984 Research Scientist, PAPRICAN, Montreal
`1977-1978 NSERC Industrial Post-doctoral Fellow, PAPRICAN
`1972-1974 Research Scientist, Uniroyal, Guelph
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`More than 30 chemical, paper companies and legal firms in the areas of papermaking chemicals,
`hydrogels, specialty polymers, consumer products, and surface science.
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`(cid:10)(cid:25)(cid:15)(cid:18)(cid:28)(cid:30)(cid:1)(cid:9)(cid:18)(cid:22)(cid:30)(cid:25)(cid:24)(cid:36)(cid:1)(cid:9)(cid:31)(cid:15)(cid:22)(cid:21)(cid:16)(cid:14)(cid:30)(cid:21)(cid:25)(cid:24)(cid:1)(cid:7)(cid:21)(cid:29)(cid:30)(cid:1)
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`302
`Publications
`19
`Patents granted or submitted
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`2017 Published (3) In press (2)
`(students, PDFs, corresponding author, other authors [funding source])
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`306 Dong Yang; Emil Gustafsson; Taylor C. Stimpson; Anton Esser; Robert H. Pelton, Hydrazide-
`Derivatized Microgels Bond to Wet, Oxidized Cellulose Giving Adhesion without Drying or
`Curing. ACS Appl. Mater. Interfaces 2017. http://dx.doi.org/10.1021/acsami.7b04700
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`305 Xiaofei Dong; Marie Price; Zongfu Dai; Manqiu Xu; Robert Pelton, Mineral-Mineral Particle
`Collisions During Flotation Remove Adsorbed Nanoparticle Flotation Collectors. J. Colloid
`Interface Sci. 2017. http://dx.doi.org/https://doi.org/10.1016/j.jcis.2017.05.050
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`304 Zhen Hu; Richard M. Berry; Robert Pelton; Emily D. Cranston, One-Pot Water-Based
`Hydrophobic Surface Modification of Cellulose Nanocrystals Using Plant Polyphenols. ACS
`Sustainable Chem. Eng. 2017, 5 (6), 5018-5026. http://dx.doi.org/10.1021/acssuschemeng.7b00415.
`[NSERC Discovery]
`
`303 Sana Jahanshahi-Anbuhi; Balamurali Kannan; Kevin Pennings; M. Monsur Ali; Vincent
`Leung; Karen Giang; Jingyun Wang; Dawn White; Yingfu Li; Robert H. Pelton; John D.
`Brennan; Carlos D. M. Filipe, Automating Multi-Step Paper-Based Assays Using Integrated
`Layering of Reagents. Lab Chip 2017, 17, 943-950. http://dx.doi.org/10.1039/C6LC01485B
`[Sentinel Bioactive Paper Network].
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`302 Qiang Fu; Igor Zoudanov; Emil Gustafsson; Dong Yang; Leyla Soleymani; Robert H. Pelton,
`Redox Properties of Polyvinylamine-G-Tempo in Multilayer Films with Sodium Poly(Styrene
`Sulfonate). ACS Appl. Mater. Inter. 2017, 9 (6), 5622–5628.
`http://dx.doi.org/10.1021/acsami.6b15319 [BASF grant].
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`2016 Published (8)
`301 Zhen Hu; Richard Xu; Emily D. Cranston; Robert H. Pelton, Stable Aqueous Foams from
`Cellulose Nanocrystals and Methyl Cellulose. Biomacromolecules 2016, 17 (12), 4095-4099.
`http://dx.doi.org/10.1021/acs.biomac.6b01641 [NSERC Discovery].
`
`300 Carla Abarca; M. Monsur Ali; Devon Bowie; Robert H. Pelton, A Simple Assay for Azide
`Surface Groups on Clickable Polymeric Nanoparticles. Colloids Surfaces A 2016, 508, 192–196.
`[NSERC CRD Vale and OCE].
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`299 Emil Gustafsson; Robert Pelton; Lars Wågberg, Strong Wet Adhesion between Cellulose Surfaces
`without Covalent Crosslinking through Polyelectrolyte Entanglement of Carboxymethylcellulose
`and Polyvinylamine ACS Appl. Mater. Inter. 2016, 8, 24161-24167. [BASF grant]
`
`298 Xiaofei Dong; Heera S. Marway; Emily D. Cranston; Robert H. Pelton, Relating Nanoparticle
`Shape and Adhesiveness to Performance as Flotation Collectors. Industrial & Engineering
`Chemistry 2016, 55 (36), 9633-9638. http://dx.doi.org/10.1021/acs. [NSERC CRD Vale and OCE].
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`297 Qiang Fu; Zachary Russell Gray; Art Van Der Est; Robert H. Pelton, Phase Behavior of
`Aqueous Poly(Acrylic Acid-G-Tempo). Macromolecules 2016, 49 (13), 4935-4939.
`http://dx.doi.org/10.1021/acs.macromol.6b00977 [BASF grant].
`
`296 Carla Abarca, M. Monsur Ali, Songtao Yang, Xiaofei Dong and Robert Pelton, A Colloidal
`Stability Assay Suitable for High Throughput Screening, Analytical Chemistry, 2016, 88 (5), 2929-
`2936. http://dx.doi.org/10.1021/acs.analchem.5b04915 [NSERC CRD Vale and OCE].
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`295 Hu, Z.; Marway, H. S.; Kasem, H.; Pelton, R.; Cranston, E. D., Dried and Redispersible
`Cellulose Nanocrystal Pickering Emulsions. ACS Macro Letters 2016, 185-189.
`http://dx.doi.org/10.1021/acsmacrolett.5b00919 [NSERC Discovery]
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`294 Jahanshahi-Anbuhi, S.; Kannan, B.; Leung, V.; Pennings, K.; Liu, M.; Carrasquilla, C.;
`White, D.; Li, Y.; Pelton, R. H.; Brennan, J. D.; Filipe, C., Simple and Ultrastable All-Inclusive
`Pullulan Tablets for Challenging Bioassays. Chemical Science 2016, (7), 2342–2346.
`http://dx.doi.org/10.1039/C5SC04184H [Sentinel Bioactive Paper Network].
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`2015 Published (7)
`293 Jahanshahi-Anbuhi, S.; Pennings, K.; Leung, V.; Kannan, B.; Brennan, J. D.; Filipe, C. D. M.;
`Pelton, R. H., Design Rules for Fluorocarbon-Free Omniphobic Solvent Barriers in Paper-Based
`Devices. ACS Appl. Mater. Inter. 2015. http://dx.doi.org/10.1021/acsami.5b08301 [Sentinel
`Bioactive Paper Network]
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`292 Kannan, B.; Jahanshahi-Anbuhi, S.; Pelton, R. H.; Li, Y.; Filipe, C. D. M.; Brennan, J. D.,
`Printed Paper Sensors for Serum Lactate Dehydrogenase using Pullulan-Based Inks to Immobilize
`Reagents. Anal. Chem. 2015, 87 (18), 9288-9293. [Sentinel Bioactive Paper Network]
`
`291 Abarca, C.; Yang, S.; Pelton, R. H., Towards high throughput screening of nanoparticle flotation
`Collectors. J. Colloid Interface Sci. 2015, 460, 97-104. [NSERC CRD Vale and OCE]
`
`
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`290 Mafi, R.; Pelton, R. H., Emulsion/Surface Interactions from Quiescent Quartz Crystal
`Microbalance Measurements with an Inverted Sensor. Langmuir 2015, 31, 7238-7241. [NSERC
`CRD with Alcon].
`
`289 Hu, Z.; Patten, T.; Pelton, R.; Cranston, E. D., Synergistic Stabilization of Emulsions and
`Emulsion Gels with Water-Soluble Polymers and Cellulose Nanocrystals. ACS Sustainable
`Chemistry & Engineering 2015, 3 (5), 1023–1031.
`http://dx.doi.org/10.1021/acssuschemeng.5b00194 [NSERC Discovery]
`
`288 Hu, Z.; Ballinger, S.; Pelton, R.; Cranston, E. D., Surfactant-Enhanced Cellulose Nanocrystal
`Pickering Emulsions. J. Colloid Interface Sci. 2015, 439, 139-148 [NSERC Discovery]
`
`287 Sicard, C.; Glen, C.; Aubie, B.; Wallace, D.; Jahanshahi-Anbuhi, S.; Pennings, K.; Daigger, G.
`T.; Pelton, R.; Brennan, J. D.; Filipe, C. D. M., Tools for Water Quality Monitoring and Mapping
`Using Paper-Based Sensors and Cell Phones. Water Res. 2015, 70, 360-369 [Sentinel Bioactive
`Paper Network]
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`2014 Published (16)
`286 Wang, J.; Filipe, C. D. M.; Brennan, J. D.; Pelton, R., Influence of a Paper Sizing Agent on Paper-
`Immobilized Biosensing Antibodies. J-FOR, Journal of Science and Technology for Forest Product
`and Processes 2014, 4 (3) 17-21. [Sentinel Bioactive Paper Network]
`
`285 Mafi, R.; Pelton, R.; Cui, Y.; Ketelson, H., Weak Gelation of Hydrophobic Guar by Albumin in
`Simulated Human Tear Solutions. Biomacromolecules 2014, 15, 4637-4642. [NSERC CRD with
`Alcon].
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`284 Zhang, Z.; Wang, J.; Ng, R.; Li, Y.; Wu, Z.; Leung, V.; Imbrogno, S.; Pelton, R.; Brennan, J.
`D.; Filipe, C. D. M., An inkjet-printed bioactive paper sensor that reports ATP through odour
`generation. Analyst 2014, 139, 4775-4778. http://dx.doi.org/10.1039/C4AN01113A [Sentinel
`Bioactive Paper Network]
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`283 Pelton, R., Polyvinylamine: A Tool for Engineering Interfaces. Langmuir 2014, 51,15373-15382
`http://dx.doi.org/10.1021/la5017214. [NSERC CRD with BASF].
`
`282 Mafi R, Gray C, Pelton R, Ketelson H, Davis J. On Formulating Ophthalmic Emulsions. Colloids
`and Surfaces B: Biointerfaces 2014, 122, 7-11. http://dx.doi.org/10.1016/j.colsurfb.2014.06.039
`[NSERC CRD with Alcon].
`
`281 Yang, S.; Xu, M.; Dai, Z.; Pelton, R., Nanoparticle Flotation Collectors for Pentlandite. Canadian
`Institute of Mining, Metallurgy and Petroleum 2014, 4 (2), 87-94. [NSERC CRD Vale and OCE]
`
`280 Zuohe Wang and Robert Pelton, Aminated Thermoresponsive Microgels Prepared from the
`Hofmann Rearrangement of Amides without Side Reactions. Langmuir 2014, 2014, 30, 6763-6767.
`http://dx.doi.org/10.1021/la501424e [NSERC CRD with BASF].
`
`279 Zuohe Wang, Erica Hart and Robert Pelton, Hypochlorite Activated Poly(N-
`Isopropylacrylamide)-Core Poly(N-Isopropylmethacrylamide)-Shell Microgels - an Oxidant with
`the Potential to Kill Cells. Colloids Surfaces A, 2014, 457, 340–344.
`http://dx.doi.org/http://dx.doi.org/10.1016/j.colsurfa.2014.05.065 [NSERC CRD with BASF].
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`278 Jahanshahi-Anbuhi, S.; Pennings, K.; Leung, V.; Liu, M.; Carrasquilla, C.; Kannan, B.; Li,
`Y.; Pelton, R.; Brennan, J. D.; Filipe, C. D. M., Pullulan Encapsulation of Labile Biomolecules to
`Give Stable Bioassay Tablets. Angewandte Chemie International Edition 2014, 53, 6155 –6158
`http://dx.doi.org/10.1002/anie.201403222 [Sentinel Bioactive Paper Network](cid:1)
`
`277 Shuxian Shi, Robert Pelton, Qiang Fu and Songtao Yang, “Comparing Polymer-supported
`TEMPO Mediators for Cellulose Oxidation and Subsequent Polyvinylamine Grafting”, I&ECR,
`2014, 53, 4748−4754. http://dx.doi.org/10.1021/ie500280e [NSERC Discovery]
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`276 Zhen Hu, Emily Cranston, Robin Ng, Robert Pelton, “Tuning cellulose nanocrystal gelation with
`polysaccharides and surfactants”, Langmuir, 2014, 30 (10), 2684–2692 [Biointerfaces Create]
`
`275 Jingyun Wang, Devon Bowie, Xi Zhang, Carlos Filipe, Robert Pelton, and John D. Brennan,
`Morphology and Entrapped Enzyme Performance in Inkjet Printed Sol-Gel Coatings on Paper,
`Chem. Materials, 2014, 26 (5), 1941–1947. http://dx.doi.org/10.1021/cm500206s [Sentinel
`Bioactive Paper Network](cid:1)
`
`274 Yaqin Xu, M. Monsur Ali, Joanna Sauder, Zhuyuan Zhang, Sergio D. Aguirre, Robert Pelton,
`Yingfu Li and Carlos D. M. Filipe Turning Tryptophanase into Odor-Generating Biosensors.
`Angewandte Chemie International Edition 2014, 53, 2620-2622.
`http://dx.doi.org/10.1002/anie.201309684 [Sentinel Bioactive Paper Network](cid:1)
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`273 Wang, J.; Monton, M. R. N.; Zhang, X.; Filipe, C. D. M.; Pelton, R.; Brennan, J. D.,
`Hydrophobic Sol-Gel Channel Patterning Strategies for Paper-Based Microfluidics. Lab on a Chip
`2014, 14, 691-694. http://dx.doi.org/10.1039/C3LC51313K [Sentinel Bioactive Paper Network]
`
`272 Hajir Mokhtari, Robert Pelton, and Liqiang Jin, Polyvinylamine-G-Galactose Is a Route to
`Bioactivated Silica Surfaces. J. Colloid Interface Sci. 2014, 413 (1), 86-91.
`http://dx.doi.org/http://dx.doi.org/10.1016/j.jcis.2013.09.038 [NSERC Discovery]
`
`271 Jahanshahi-Anbuhi, S.; Henry, A.; Leung, V.; Sicard, C.; Pennings, K.; Pelton, R. ; Brennan,
`J. D.; Filipe, C., Paper-Based Microfluidics with Erodible Polymeric Bridge Giving Controlled
`Release and Timed Flow Shutoff. Lab on a Chip 2014, 14, 229–236
`http://dx.doi.org/10.1039/C3LC50762A [Sentinel Bioactive Paper Network]
`
`2013 (10)
`270 Zuohe Wang, Wing Yan Lam, and Robert Pelton*, “N-Chlorinated Poly(N-isopropylacrylamide)
`Microgels”, Langmuir, 2013, 29, 12924−12929 [NSERC CRD with BASF]
`
`269 Hanna Koivula, Robert Pelton, John. D Brennan, Joelle Grenon and Tony Manfred,
`“Flexographic printability of sol-gel encapsulated enzyme”, Nordic Pulp Paper Research Journal, 28
`(3), 450-457. [Sentinel Bioactive Paper Network]
`
`268 Jieyi Liu, Robert Pelton, Jaclyn M. Obermeyer, and Anton Esser, “Laccase Complex with
`Polyvinylamine Bearing Grafted TEMPO is a Cellulose Adhesion Primer” Biomacromolecules, 14,
`2953−2960. [NSERC CRD with BASF]
`
`267 Songtao Yang, Bi Bi Marzieh Razavizadeh, Robert Pelton and Gerard Bruin, “Soft Nanoparticle
`Flotation Collectors, ACS Applied Interfaces 2013, 5, 4836−4842.[Vale and OCE]
`
`266 Yang, S.; Pelton, R.; Abarca, C.; Dai, Z.; Montgomery, M.; Xu, M.; Bos, J.-A., Towards
`Nanoparticle Flotation Collectors for Pentlandite Separation. Int. J. Miner. Process. 2013, 123, 137-
`144 [Vale and OCE]
`
`265 Pelton, R.; Yang, S., Modeling Air Bubble Adhesion to Hydrophilic Particles Decorated with
`Hydrophobic Nanoparticles. Fundamental and applied pulp and paper modeling symposium 2013,
`201-210 [Vale and OCE]
`
`264 Zuohe Wang and Robert Pelton, Chloramide Copolymers From Reacting Poly(N-
`isopropylacrylamide) with Bleach, European Polymer Journal, 2013, 49, 2196-2201.
`http://dx.doi.org/10.1016/j.eurpolymj.2013.04.018 [NSERC CRD with BASF]
`
`263 Liu, J.; Pelton, R., Reactive Polyvinylamine-Graft-Tempo/Laccase Complex Giving Wet Cellulose
`Adhesion. In Advances in Pulp and Paper Research: Transactions of the 14th Fundamental
`Research Symposium, Ed. Pulp & Paper Fundamental Research Society: Cambridge, UK, 2013;
`Vol. 2, pp 869-885, 2013. [NSERC CRD with BASF]
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`10
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`262 Ye, L.; Pelton, R.; Brook, M. A.; Filipe, C. D. M.; Wang, H.; Brovko, L.; Griffiths, M., Targeted
`Disinfection of E. Coli Via Bioconjugation to Photoreactive Tio2. Bioconjugate Chemistry 2013,
`24, 448-465. http://dx.doi.org/10.1021/bc300581t[Sentinel Bioactive Paper Network]
`
`261 Robert Pelton, Yuguo Cui, Dan Zhang, Yang Chen, Kate L. Thompson, Steven P Armes,
`Michael A. Brook, A Facile Phenylboronate Modification of Silica by a Silaneboronate, Langmuir,
`2013, 29, 594−598. http://dx.doi.org/10.1021/la3040837
`
`2012 (12)
`260 Martin A. Hubbe, Anna Sundberg, Paulina Mocchiutti, Yonghao Ni, and Robert Pelton,
`Contributions to the titratable charge of papermaking process waters and suspensions: a review,
`Bioresources,(cid:1)2012, 7 (4), 6109-6193.
`259 Sana Jahanshahi Anbuhi, Puneet Chavan, Clémence Sicard, Vincent Leung, S. M. Zakir
`Hossain, Robert Pelton, John D. Brennan and Carlos D.M. Filipe, Creating Fast Flow Channels
`in Paper Fluidic Devices to Control Timing of Sequential Reactions., Lab on a Chip 2012, 12,
`5079-5085. [Sentinel Bioactive Paper Network]
`
`258 Teruaki Satoa, M. Monsur Alib, Robert H. Peltonb and Emily D. Cranstonb DNA Stickers Promote
`Polymer Adsorption onto Cellulose, Biomacromolecules, 2012, 13 (10), 3173-3180.
`http://dx.doi.org/10.1021/bm300940e [NSERC Discovery]
`
`257 Pelton, R., Forward. In Hydrogel Micro and Nanoparticles, Lyon, L. A.; Serpe, M. J., Eds. Wiley-
`VCH: Weinheim, 2012.
`
`256 Songtao Yang, Robert Pelton, Miles Montgomery and Yuguo Cui, Nanoparticle Flotation
`Collectors Iii – the Role of Nanoparticle Diameter. ACS Applied Materials & Interfaces 2012, 4,
`4882−4890..http://dx.doi.org/10.1021/am301215h .[Vale and OCE]
`
`255 Quan Wen and Robert Pelton “Design Rules for Microgel-supported Adhesives”, I&CR, (51),
`9564−9570. http://dx.doi.org/10.1021/ie3009428 [NSERC CRD with BASF]
`
`254 Vincent Leung, Sean C. Johnstone, Yaqin Xu, Robert Pelton* and Carlos D. M. Filipe, Paper-
`based device for pre-concentration of target analytes, Nordic Pulp and Paper Research Journal,
`2012, 27, 814-819. [Sentinel Bioactive Paper Network]
`
`253 Wen, Q.; Pelton, R., Microgel Adhesives for Wet Cellulose – Measurements and Modeling.
`Langmuir 2012, 28 (12), 5450–5457 http://dx.doi.org/10.1021/la2050493 [NSERC CRD with BASF]
`
`252 Wang, J.; Yiu, B.; Obermeyer, J.; Filipe, C.; Brennan, J. D.; Pelton, R., The Effects of
`Temperature and Relative Humidity on the Stability of Paper-Immobilized Antibodies.
`Biomacromolecules, 2012, 13, (2), 559–564. http://dx.doi.org/10.1021/bm2017405 [Sentinel Bioactive Paper
`Network]
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`251 Zhang, D.; Pelton, R., Controlling the Assembly of Nanoparticle Mixtures with Two Orthogonal
`Polymer Complexation Reactions. Langmuir, 2012, 28, 3112−3119. http://dx.doi.org/10.1021/la204514y
`[NSERC Discovery]
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`11
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`250 Yang, S.; Pelton, R.; Xu, M.; Dai, Z., Nanoparticle Flotation Collectors for Pentlandite. In
`Proceedings of the 44th Annual Canadian Mineral Processors Conference, Canadian Institute of
`Mining Metallurgy and Petroleum: Ottawa, 2012; 225-236.[Vale and OCE]
`
`249 Wen, Q.; Vincelli, A. M.; Pelton, R., Cationic Polyvinylamine Binding to Anionic Microgels
`Yields Kinetically Controlled Structures. J. Colloid Interface Sci. 2012, 369, (1), 223–230
`http://dx.doi.org/10.1016/j.jcis.2011.12.035 [NSERC CRD with BASF]
`
`2011 (10)
`248 Yang, S.; Pelton, R., Nanoparticle Flotation Collectors



