YearAuthorsTitlePublicationDOI
2025Tripathi et al.Engineering the retention of coloured latex and red blood cells for paper agglutination diagnosticsJ Colloid Interface Sci. 1-s2.0-S0021979725017278-main
2025H. E. Cainglet et al.Can pure cellulose nanofibril films replace polyolefins as water vapor barriers in packaging?Journal of Colloid and Interface Science, vol. 678, pp. 547–55510.1016/j.jcis.2024.09.060
2025Naghmeh Nasiri; Hans Estrella Cainglet; Jay R. Black; Gil Garnier; Warren BatchelorModulating the Properties of Hybrid Nanocellulose FilmsBiomacromolecules10.1021/acs.biomac.4c01034
2025Gloria Lizeth Diaz-Arenas; Craig W. Stocker; M. Munir Sadiq; Gil Garnier; Joanne TannerPurification of Eucalyptus globulus steam explosion hydrolysates via nanofiltration to recover xylooligosaccharidesSeparation and Purification Technology, Volume 354, Part 3, 2025, 12889810.1016/j.seppur.2024.128898
2024N. Nasiri; H. E. Cainglet; G. Garnier; W. BatchelorTransparent maltitol-cellulose nanocrystal film for high performance barrierCellulose, 31, 7421–7436s10570-024-06022-4
2024V. Raghuwanshi; G. GarnierNanoparticle Decorated Cellulose Nanocrystals Hybrids/composites: Energy, Catalysis and Biomedical ApplicationsAdvanced Functional Materials (2024)10.1002/adfm.202412869
2024G. Lizeth Diaz-Arenas; H. Hoang; V. Raghuwanshi; A. Sokolova; H. Cainglet; M. Sadiq; G. Garnier; J. TannerUnlocking the Potential of Xylooligosaccharides: Nanofiltration for Fractionation of Hardwood HydrolysatesSeparation and Purification Technologyssrn-4484952
2024P. Vijay; V. Raghuwanshi; J. Ma; W. Batchelor; K. SeitoFenton-like oxidation of pinewood to produce cellulose nanoparticles in one pot treatmentCellulose, 31 (2024) 953s10570-023-05573-2
2024D. J. Mendoza; N. Nasiri; R. N. Duffin; V. S. Raghuwanshi; J. Mata; G. P. Simon; J. F. Hooper; G. GarnierMultifunctional graft-IPN hydrogels of cellulose nanofibers and poly(N-isopropyl acrylamide) via silver-promoted decarboxylative radical polymerizationMaterials Today Chemistry, 37, Article 1020141-s2.0-S2468519424001204-main
2024R. Sharma; K. H. Putera; M. M. Banaszak Holl; G. Garnier; V. S. HaritosModulating the hydrophobicity of cellulose by lipase-catalyzed transesterificationInternational Journal of Biological Macromolecules, 254, Article 1279721-s2.0-S0141813023048717-main
2024R. Sharma; K. H. Putera; M. M. Banaszak Holl; G. Garnier; V. S. HaritosSolvent-free cellulose fatty amide synthesis aided by enzymatic oxidationCellulose, 31, 765–776s10570-023-05688-6
2024M. Ayurini; D. Haridas; D. J. Mendoza; G. Garnier; J. F. HooperRAFT Polymerisation by the Radical Decarboxylation of Carboxylic AcidsAngewandte Chemie, 2024, 63, e202317071doi.org/10.1002/anie.202317071
2024C. Anyaegbu; D. Haridas; G. Vidali; J. HooperRadical decarboxylation: an emerging tool in polymer synthesis (review)Polymer Chemistry, 2024, 15, 2537–2547d4py00267a
2024V. S. Raghuwanshi; D. J. Mendoza; J. Mata; G. GarnierModulating the isotopic hydrogen-deuterium exchange in functionalized nanocellulose to optimize SANS contrastCarbohydrate Polymers, 345, 1225911-s2.0-S0144861724008178-main
2024C. Bourgery; D. J. Mendoza; G. Garnier; L. Mouterde; F. AllaisImmobilization of Adenosine Derivatives onto Cellulose Nanocrystals via Click chemistry for Biocatalysis ApplicationsACS Applied Materials & Interfaces (accepted)10.1021/acsami.3c19025
2024C. W. Stocker; V. N. L. Wong; A. F. Patti et al.Effect of lignin in cellulose nanofibers on biodegradation and seed germinationChemical and Biological Technologies in Agriculture, 11, 15 (2024)s40538-023-00528-y
2023D. J. Mendoza; M. Ayurini; V. S. Raghuwanshi; G. P. Simon; J. F. Hooper; G. GarnierSynthesis of Superabsorbent Polyacrylic Acid-Grafted Cellulose Nanofibers via Silver-Promoted Decarboxylative Radical PolymerizationMacromolecules, 56(10), 3497–350610.1021/acs.macromol.3c00431
2023H. Nadeem; M. Naseri; M. Dehghani; M. Pazirofteh; V. Raghuwanshi; G. Garnier; W. BatchelorSpray Deposited Cellulose Nanofibril Films: A Recyclability StudyWaste and Biomass Valorizations12649-023-02137-0
2023H. E. Cainglet; J. Tanner; N. Nasiri et al.Rapid cellulose nanomaterial characterisation by rheologyCellulose, 30, 4971–4982s10570-023-05180-1
2023H. Nadeem; M. Dehghani; S. Miri; M. Pazirofteh; G. Garnier; W. BatchelorHighly hydrophobic and moisture barrier nanocellulose based films produced via spray depositionCelluloses10570-023-05171-2
2023M. Lin; V. S. Raghuwanshi; C. Browne; G. P. Simon; G. GarnierTailoring the humidity response of cellulose nanocrystal-based films by specific ion effectsJournal of Colloid and Interface Science, 629, 694–7041-s2.0-S0021979722016836-main
2023P. S. Roy; M. M. Mention; A. F. Patti; G. Garnier; F. Allais; K. SaitoPhoto-responsive lignin fragment-based polymers as switchable adhesivesPolymer Chemistry, 14(8), 913–924ff10.1039/D2PY01474B
2023C. Browne; M. J. Hertaeg; D. J. Mendoza; M. Naseri; M. Lin; G. Garnier; W. BatchelorMicropatterned cellulosic films to modulate paper wettabilityColloids and Surfaces A, 656, 130379doi.org/10.1016/j.colsurfa.2022.130379
2023V. S. Raghuwanshi; C. Browne; W. Batchelor; G. GarnierSelf-assembly of cellulose nanocrystals of different lengthsJournal of Colloid and Interface Science, 630, 249–259doi.org/10.1016/j.jcis.2022.10.100
2023S. Miri; A. De Girolamo; H. Nadeem; B. W. X. Chin; Y. Hora; P. C. Andrews; W. BatchelorComposite membranes of cellulose–mesoporous silica: optimization of membrane fabrication and adsorption capacityCellulose, 30(1), 339–357s10570-022-04908-9
2022V. S. Raghuwanshi; M. Lin; G. GarnierBiomolecules adsorption to trigger the self-assembly of nanospheres and nanorodsColloids and Surfaces A, 654, 130181doi.org/10.1016/j.colsurfa.2022.130181
2022S. Bürgmayr; J. Tanner; W. Batchelor; A. F. HoadleyCaCO₃ solubility in the process water of recycled containerboard millsNordic Pulp & Paper Research Journal10.1515_npprj-2022-0042
2022M. Dehghani; M. Naseri; H. Nadeem; M. M. B. Holl; W. BatchelorSunlight-driven photocatalytic per- and polyfluoroalkyl substances degradation over zinc oxide/cellulose nanofiber catalyst using a continuous flow reactorJournal of Environmental Chemical Engineering, 10(6), 108686doi.org/10.1016/j.jece.2022.108686
2022P. Vijay; W. Batchelor; K. SaitoSustainable Production of Cellulose Nanoparticles from Biomass in One Pot Treatmentdoi.org/10.21203/rs.3.rs-1810044/v1
2022P. Vijay; W. Batchelor; K. SaitoPreparation of coumarin polymer grafted nanocellulose films to form high performance, photoresponsive barrier layersJournal of Polymer ScienceDOI: 10.1002/pol.20220248
2022W. Kargupta; R. Seifert; M. Martinez; J. Olson; J. Tanner; W. BatchelorPreparation and benchmarking of novel cellulose nanopaperCellulose, 29(8), 4393–4411s10570-022-04563-0
2022M. Dehghani; M. Naseri; H. Nadeem; M. B. Holl; W. BatchelorPhotocatalytic Degradation of 1,4-Dioxane and Malachite Green over Zinc Oxide/Cellulose Nanofiber Using UVA/B from Direct Sunlight and a Continuous Flow ReactorACS ES&T Water, 2(5), 786–797doi.org/10.1007/s10570-022-04563-0
2022M. Naseri; M. Maliha; M. Dehghani; G. P. Simon; W. BatchelorRapid detection of gram-positive and -negative bacteria in water samples using mannan-binding lectin-based visual biosensorACS Sensors, 7(4), 951–959doi.org/10.1021/acssensors.1c01748
2022M. Naseri; Z. M. Ziora; G. P. Simon; W. BatchelorASSURED-compliant point-of-care diagnostics for the detection of human viral infectionsDOI: 10.1002/rmv.2263
2022C. W. Stocker; M. Lin; V. N. Wong; A. F. Patti; G. GarnierModulating superabsorbent polymer properties by adjusting the amphiphilicityFrontiers in Chemistry, 10DOI 10.3389/fchem.2022.100961
2022C. Browne; V. S. Raghuwanshi; M. Lin; G. Garnier; W. BatchelorCharacterisation of cellulose nanocrystals by rheology and SAXSColloids and Surfaces A, 651, 129532doi.org/10.1016/j.colsurfa.2022.129532
2022H. Nadeem; M. Athar; M. Dehghani; G. Garnier; W. BatchelorRecent advancements, trends, fundamental challenges and opportunities in spray deposited cellulose nanofibril films for packaging applicationsScience of the Total Environment, 836, 155654doi.org/10.1007/s10570-022-04563-0
2022M. Maliha; R. Brammananth; R. L. Coppel; M. V. Werrett; P. C. Andrews; W. BatchelorThe effect of pulp type on the performance of microfibrillar lignocellulosic bismuth-based active packaging materialCelluloses10570-022-04562-1
2022V. Raghuwanshi; S. Varanasi; W. Batchelor; G. GarnierCellulose nanocrystals to modulate the self-assembly of graphene oxide in suspensionMaterials & Design, 216, 1105721-s2.0-S0264127522001939
2022L. Hossain; R. M. Barajas Ledesma; J. Tanner; G. GarnierEffect of crosslinking on nanocellulose superabsorbent biodegradabilityCarbohydrate Polymer Technologies and Applications, 3, 10019910.1016/j.carpta.2022.100199
2022D. J. Mendoza; M. Ayurini; C. Browne; V. S. Raghuwanshi; G. P. Simon; J. F. Hooper; G. GarnierThermoresponsive Poly(N-isopropylacrylamide) Grafted from Cellulose Nanofibers via Silver-Promoted Decarboxylative Radical PolymerizationBiomacromolecules10.1021/acs.biomac.1c01444
2022P. Vijay; W. Batchelor; K. SaitoOne-pot treatment of cellulose using iron oxide catalysts to produce nanocellulose and water-soluble oxidised celluloseCarbohydrate Polymers, 282, 11906010.1016/j.carbpol.2021.119060
2022R. Sharma; G. Garnier; V. HaritosA study of different actions of glucanases to modulate microfibrillated cellulose propertiesCellulose, 29, 2323–2332s10570-022-04451-7
2022H. Nadeem; M. Dehghani; G. Garnier; W. BatchelorLife cycle assessment of cellulose nanofibril films via spray deposition and vacuum filtration pathways for small scale productionJournal of Cleaner Production, 342, 13089010.1016/j.jclepro.2022.130890
2022E. S. Rodríguez; G. L. Díaz-Arenas; S. Makart; D. Ghosh; A. F. Patti; G. Garnier; J. Tanner; B. PaullDetermination of xylooligosaccharides produced from enzymatic hydrolysis of beechwood xylan using HPAEC-MSJournal of Chromatography A, 1666, 46283610.1016/j.chroma.2022.462836
2022G. L. Diaz-Arenas; L. Lebanov; E. S. Rodriguez; M. M. Sadiq; B. Paull; G. Garnier; J. TannerChemometric Optimisation of Enzymatic Hydrolysis of Beechwood Xylan to Target Desired XylooligosaccharidesSSRN Electronic Journal10.2139/ssrn.4032422
2022R. M. Barajas-Ledesma; C. W. Stocker; V. N. L. Wong; K. Little; A. F. Patti; G. GarnierBiodegradation of a Nanocellulose Superabsorbent and its Effect on the Growth of Spinach (Spinacia oleracea)ACS Agricultural Science & Technology, 2(1), 90–9910.1021/acsagscitech.1c00178
2022G. Garnier; V. S. RaghuwanshiMacromolecules at the Interface: Concepts to ApplicationsRoyal Society of Chemistry (book)
2021D. J. Mendoza; M. Maliha; V. S. Raghuwanshi; C. Browne; L. M. M. Mouterde; G. P. Simon; F. Allais; G. GarnierDiethyl sinapate-grafted cellulose nanocrystals as nature-inspired UV-filters in cosmetic formulationsMaterials Today Bio, 2021, 100126doi.org/10.1016/j.mtbio.2021.100126
2021M. Maliha; B. Tan; K. Wong; S. Miri; R. Brammananth; R. L. Coppel; M. Werrett; P. C. Andrews; W. BatchelorBismuth phosphinato incorporated antibacterial filter paper for drinking water disinfectionColloids and Surfaces A, 627, 127167doi.org/10.1016/j.colsurfa.2021.127167
2021D. J. Mendoza; C. Browne; V. S. Raghuwanshi; L. M. M. Mouterde; G. P. Simon; F. Allais; G. GarnierPhenolic Ester-Decorated Cellulose Nanocrystals as UV-Absorbing Nanoreinforcements in Polyvinyl Alcohol FilmsACS Sustainable Chemistry & Engineering, 9(18), 6427–6437doi.org/10.1021/acssuschemeng.1c01148
2021D. Ghosh; A. B. Vir; G. Garnier; A. F. Patti; J. TannerContinuous flow production of xylooligosaccharides by enzymatic hydrolysisChemical Engineering Science, 244, 11678910.1016/j.ces.2021.116789
2021L. Lebanov; A. Ghiasvand; B. PaullData handling and data analysis in metabolomic studies of essential oils using GC-MSJournal of Chromatography A, 1640, 461896doi.org/10.1016/j.chroma.2021.461896
2021L. Lebanov; S. C. Chapman; et al.Radical scavenging activity and metabolomic profiling study of ylang-ylang essential oilsJournal of Chromatography B, 122861doi.org/10.1016/j.jchromb.2021.122861
2021L. Lebanov; B. PaullSmartphone-based handheld Raman spectrometer and machine learning for essential oil quality evaluationAnalytical MethodsDOI:10.1039/d1ay00886b
2021M. Lin; V. S. Raghuwanshi; C. Browne; S. George; G. GarnierModulating the Chiral Nanoarchitecture of Cellulose Nanocrystals through Interaction with Salts and PolymerJournal of Colloid and Interface Science, 61310.1016/j.jcis.2021.12.182
2021H. E. Cainglet; T. Saavedra; S. Burgmayr; J. Zhang; Z. Xie; G. Garnier; J. TannerRecycled paper mill process water pre-treatment using ultrafiltration for water system closureJournal of Water Process Engineering, 44(11): 10240710.1016/j.jwpe.2021.102407
2021W. Kargupta; C. Browne; L. Verdugo; I. Hunt; K. Stack; W. Batchelor; J. TannerFlotation as a separation technology for recovering pulp fines and sustainable nanocellulose productionSeparation and Purification Technology, 270, 11881010.1016/j.seppur.2021.118810
2021S. Fadlallah; P. S. Roy; G. Garnier; K. Saito; F. AllaisAre lignin-derived monomers and polymers truly sustainable? An in-depth green metrics calculations approachGreen Chemistry, 23, 1495–153510.1039/D0GC03982A
2021R. M. Barajas-Ledesma; V. N. L. Wong; K. Little; A. F. Patti; G. GarnierCarboxylated nanocellulose superabsorbent: Biodegradation and soil water retention propertiesJournal of Applied Polymer Science, 139(3), 51495app.51495
2021K. Shanmugam; S. Ang; M. Maliha; V. S. Raghuwanshi; S. Varanasi; G. Garnier; W. BatchelorHigh-performance homogenized and spray coated nanofibrillated cellulose-montmorillonite barriersCellulose 28, 405–416s10570-020-03515-w
2021J. L. Sanchez-Salvador; M. C. Monte; C. Negro; W. Batchelor; G. Garnier; A. BlancoSimplification of gel point characterization of cellulose nano and microfibre suspensionsCellulose, 28, 6995–7006s10570-021-04003-5
2021R. Curvello; G. GarnierCationic Cross-Linked Nanocellulose-Based Matrices for the Growth and Recovery of Intestinal OrganoidsBiomacromolecules, 22(2), 701–70910.1021/acs.biomac.0c01510
2021R. Curvello; G. Kerr; D. J. Micati; W. H. Chan; V. S. RaghuwanshiEngineered Plant-Based Nanocellulose Hydrogel for Small Intestinal Organoid GrowthAdvanced Science, 8(1)10.1002/advs.202002135
2021L. Hossain; V. S. Raghuwanshi; J. Tanner; G. GarnierModulating nanocellulose hydrogels and cryogels strength by crosslinking and blendingColloids and Surfaces A, 630, 12760810.1016/j.colsurfa.2021.127608
2021L. Hossain; E. Eastman; M. De Rango; V. S. Raghuwanshi; J. Tanner; G. GarnierAbsorption kinetics of nanocellulose foams: Effect of ionic strength and surface chargeJournal of Colloid and Interface Science, 601, 124–13210.1016/j.jcis.2021.05.092
2021D. J. Mendoza; L. Hossain; C. Browne; V. S. Raghuwanshi; G. P. Simon; G. GarnierControlling the transparency and rheology of nanocellulose gels with the extent of carboxylationCarbohydrate Polymers, 245, 11656610.1016/j.carbpol.2020.116566
2021V. Raghuwanshi; A. Gallos; D. J. Mendoza; M. Lin; F. Allais; G. GarnierNanocrystallisation and self-assembly of biosourced ferulic acid derivative in polylactic acid elastomeric blendsJournal of Colloid and Interface Science, 606, Part 2, 1842–185110.1016/j.jcis.2021.08.123
2021M. Maliha; R. Brammananth; J. Dyson; R. L. Coppel; M. Werrett; P. C. Andrews; W. BatchelorBiocompatibility and selective antibacterial activity of bismuth phosphinato-nanocellulose hydrogelCellulose, 28, 4701–4718s10570-021-03835-5
2021Bushell, M.; Meija, J.; Chen, M.; Batchelor, W.; Browne, C.; Cho, J.-Y.; Clifford, C. A.; Al-Rekabi, Z.; Vanderfleet, O. M.; Cranston, E. D.; Lawn, M.; Coleman, V. A.; Nyström, G.; Arcari, M.; Mezzenga, R.; Park, B. C.; Shin, C.; Ren, L.; Bu, T.; Saito, T.; Kaku, Y.; Wagner, R.; Johnston, L. J.Particle size distribution for cellulose nanocrystals measured by atomic force microscopy: an interlaboratory comparisonCellulose, 28, 1387–1403s10570-020-03618-4
2021Ang, S.; Ghosh, D.; Haritos, V.; Batchelor, W.Recycling cellulose nanofibers from wood pulps provides drainage improvements for high strength sheets in papermakingJournal of Cleaner Production, 312, 12773110.1016/j.jclepro.2021.127731
2021Miri, S.; Raghuwanshi, V. S.; Andrews, P. C.; Batchelor, W.Composites of mesoporous silica precipitated on nanofibrillated cellulose and microfibrillated cellulose: Effect of fibre diameter and reaction conditions on particle size and mesopore diameterMicroporous and Mesoporous Materials, 311, 11070110.1016/j.micromeso.2020.110701
2021Kargupta, W.; Seifert, R.; Martinez, M.; Olson, J.; Tanner, J.; Batchelor, W.Sustainable production process of mechanically prepared nanocellulose from hardwood and softwood: A comparative investigation of refining energy consumption at laboratory and pilot scaleIndustrial Crops and Products, 171, 11386810.1016/j.indcrop.2021.113868
2021Browne, C.; Lim, J. C.; Sin, W. H.; Garnier, G.; Batchelor, W.Influence of Size and Chemical Additives on the Fabrication of Micropattern Nanocellulose FilmsACS Sustainable Chemistry & Engineering, 9(35), 11714–1172310.1021/acssuschemeng.1c02478
2021Ghosh, D.; Tanner, J.; Lavoie, J.-M.; Garnier, G.; Patti, A.An integrated approach for hemicellulose extraction from forest residueBioResources, 16(2), 2524–2547BioResource
2020Mendoza, D. J.; Mouterde, L. M. M.; Browne, C.; Raghuwanshi, V. S.; Simon, G. P.; Garnier, G.; Allais, F.Grafting nature-inspired and bio-based phenolic esters onto cellulose nanocrystals gives biomaterials with photostable anti-UV propertiesChemSusChem10.1002/cssc.202002017
2020Dehghani, M.; Nadeem, H.; Raghuwanshi, V. S.; Mahdavi, H.; Banaszak Holl, M. M.; Batchelor, W.ZnO/Cellulose Nanofiber Composites for Sustainable Sunlight-Driven Dye DegradationACS Applied Nano Materials, 3(10), 10284–1029510.1021/acsanm.0c02199
2020Lebanov, L.; Chatterjee, S.; Tedone, L.; Chapman, S. C.; Linford, M. R.; Paull, B.Comprehensive characterisation of ylang-ylang essential oils according to distillation time, origin, and chemical composition using a multivariate approachJournal of Chromatography A, 1618, 460853https://doi.org/10.1016/j.chroma.2020.460853
2020Lebanov, L.; Tedone, L.; Ghiasvand, A.; Paull, B.Characterisation of complex perfume and essential oil blends using MCR-ALS on average mass spectrum from GC-MSTalanta, 219, 121208doi.org/10.1016/j.talanta.2020.121208
2020Maliha, M.; Herdman, M.; Brammananth, R.; McDonald, M.; Coppel, R.; Werrett, M.; Andrews, P.; Batchelor, W.Bismuth phosphinate incorporated nanocellulose sheets with antimicrobial and barrier properties for packaging applicationsJournal of Cleaner Production, 246, 11901610.1016/j.jclepro.2019.119016
2020Browne, C.; Garnier, G.; Batchelor, W.Moulding of micropatterned nanocellulose films and their application in fluid handlingJournal of Colloid and Interface Science, 587, 162–17210.1016/j.jcis.2020.11.125
2020Raghuwanshi, V. S.; Yu, B.; Browne, C.; Garnier, G.Reversible pH responsive bovine serum albumin hydrogel sponge nanolayerFrontiers in Bioengineering and Biotechnology, 8, 57310.3389/fbioe.2020.00573
2020Kępa, K.; Chaléat, C. M.; Nasim, A.; Batchelor, W.; Grøndahl, L.; Martin, D. J.Correction to: Evaluation of properties and specific energy consumption of spinifex-derived lignocellulose fibers produced using different mechanical processesCellulose, 27(6), 3551–355210.1007/s10570-020-02982-5
2020Nadeem, H.; Naseri, M.; Shanmugam, K.; Browne, C.; Garnier, G.; Batchelor, W.Impact of heat drying on the physical and environmental characteristics of the nanocellulose-based films produced via spray deposition techniqueCellulose, 27(17), 10225–1023910.1007/s10570-020-03473-3
2020Lin, M.; Raghuwanshi, V. S.; Browne, C.; Simon, G. P.; Garnier, G.Modulating transparency and colour of cellulose nanocrystal composite films by varying polymer molecular weightJournal of Colloid and Interface Science, 584, 216–22410.1016/j.jcis.2020.09.123
2020J. D. Mendoza; L. M. M. Mouterde; C. Browne; V. S. Raghuwanshi; G. P. Simon; G. Garnier; F. AllaisGrafting Nature-Inspired and Bio-Based Phenolic Esters onto Cellulose Nanocrystals Gives Biomaterials with Photostable Anti-UV PropertiesChemSusChem10.1002/cssc.202002017
2020Barajas-Ledesma, R. M.; Patti, A. F.; Wong, V. N. L.; Raghuwanshi, V. S.; Garnier, G.Engineering nanocellulose superabsorbent structure by controlling the drying rateColloids and Surfaces A, 600, 12494310.1016/j.colsurfa.2020.124943
2020Hertaeg, M. J.; Tabor, R. F.; Berry, J. D.; Garnier, G.Radial wicking of biological fluids in paperLangmuir, 36(28), 8209–821710.1021/acs.langmuir.0c01318
2020Nadeem, H.; Naseri, M.; Kirubanandan, S.; Dehghani, M.; Browne, C.; Miri, S.; Batchelor, W.An energy efficient production of high moisture barrier nanocellulose/carboxymethyl cellulose films via spray-deposition techniqueCarbohydrate Polymers, 250, 11691110.1016/j.carbpol.2020.116911
2020Hossain, L.; Raghuwanshi, V. S.; Tanner, J.; Wu, C. M.; Kleinerman, O.; Cohen, Y.; Garnier, G.Structure and swelling of cross-linked nanocellulose foamsJournal of Colloid and Interface Science, 568, 234–24410.1016/j.jcis.2020.02.048
2020Naseri, M.; Simon, G. P.; Batchelor, W.Development of a paper-based microfluidic system for a continuous high-flow-rate fluid manipulationAnalytical Chemistry, 92(10), 7307–731610.1021/acs.analchem.0c01003
2020Raghuwanshi, V. S.; Garusinghe, U. M.; Batchelor, W.; Garnier, G.Polyamide-amine-epichlorohydrin (PAE) induced TiO₂ nanoparticle assembly in cellulose networkJournal of Colloid and Interface Science, 575, 317–32510.1016/j.jcis.2020.04.121
2020Ang, S.; Narayanan, J. R.; Kargupta, W.; et al.Cellulose nanofiber diameter distributions from microscopy image analysis: effect of measurement statistics and operatorCellulose, 27, 4189–420810.1007/s10570-020-03058-0
2020Ang, S.; Haritos, V.; Batchelor, W.Cellulose nanofibers from recycled and virgin wood pulp: A comparative study of fiber developmentCarbohydrate Polymers, 234, 11590010.1016/j.carbpol.2020.115900
2020Bialkower, M.; Mcliesh, H.; Manderson, C.; Tabor, R.; Garnier, G.Rapid handheld paper diagnostic for measuring fibrinogen concentration in bloodAnalytica Chimica Acta, 1102, 72–8310.1016/j.aca.2019.12.046
2020Longe, L.; Garnier, G.; Saito, K.Linear bio-based water soluble aromatic polymers from syringic acid, S-type degradation fragment from ligninJournal of Polymer Science10.1002/pol.20190070
2020Prathapan, R.; Tabor, R. F.; Garnier, G.; Hu, J.Recent progress in cellulose nanocrystal alignment and its applicationsACS Applied Bio Materials, 3(4), 1828–184410.1021/acsabm.0c00104
2020Salvador, J. L. S.; Monte, M. C.; Batchelor, W.; Garnier, G.; Negro, C.; Blanco, A.Characterizing highly fibrillated nanocellulose by modifying the gel point methodologyCarbohydrate Polymers, 227, 11534010.1016/j.carbpol.2019.115340
2020Shanmugam, K.; Nadeem, H.; Browne, C.; Garnier, G.; Batchelor, W.Engineering surface roughness of nanocellulose film via spraying to produce smooth substratesColloids and Surfaces A, 12439610.1016/j.colsurfa.2019.124396
2020Uddin, M.; Batchelor, W.; Allardyce, B.; Byrne, N.; Barrow, C.; Wang, X.; Rajkhowa, R.Preparing Bombyx mori silk nanofibers using a sustainable and scalable approachACS Sustainable Chemistry & Engineering, 8(2), 1155–116210.1021/acssuschemeng.9b06138
2019Ang, S.; Haritos, V.; Batchelor, W.Effect of refining and homogenization on nanocellulose fiber development, sheet strength and energy consumptionCellulose, 26, 4767–478610.1007/s10570-019-02400-5
2019Bialkower, M.; Mcliesh, H.; Manderson, C.; Tabor, R.; Garnier, G.Rapid paper diagnostic for plasma fibrinogen concentrationThe Analyst, 144(16)c9an00616h
2019Curvello, R.; Raghuwanshi, V. S.; Garnier, G.Engineering nanocellulose hydrogels for biomedical applicationsAdvances in Colloid and Interface Science, 267, 47–6110.1016/j.cis.2019.03.002
2019Curvello, R.; Mendoza, L.; Mcliesh, H.; Tabor, R.; Garnier, G.Nanocellulose hydrogel for blood typing testsACS Applied Bio Materials, 2(6), 2355–236410.1021/acsabm.9b00080
2019Garnier, G.; Manderson, C.; Giri, S.; Garnier, G.IdentiCyte: Simple red blood cell identification softwareSoftwareX, 9, 223–22910.1016/j.softx.2019.02.006
2019Hertaeg, M.; Tabor, R.; Berry, J.; Garnier, G.Dynamics of stain growth from sessile droplets on paperJournal of Colloid and Interface Science, 541, 312–32110.1016/j.jcis.2019.01.032
2019Lebanov, L.; Tedone, L.; Ghiasvand, A.; Paull, B.Random Forests ML applied to GC-MS average mass spectrum data sets for classification and characterisation of essential oilsTalanta, 2019, 12047110.1016/j.talanta.2019.120471
2019Mendoza, D.; Browne, C.; Raghuwanshi, V.; Simon, G.; Garnier, G.One-shot TEMPO-periodate oxidation of native celluloseCarbohydrate Polymers, 226, 11529210.1016/j.carbpol.2019.115292
2019Mendoza, L.; Gunawardhana, T.; Batchelor, W.; Garnier, G.Nanocellulose for gel electrophoresisJournal of Colloid and Interface Science, 540, 148–15410.1016/j.jcis.2019.01.017
2019Mendoza, L.; Hossain, L.; Downey, E.; Scales, C.; Batchelor, W.; Garnier, G.Carboxylated nanocellulose foams as superabsorbentsJournal of Colloid and Interface Science, 538, 433–43910.1016/j.jcis.2018.11.017
2019Onur, A.; Ng, A.; Garnier, G.; Batchelor, W.The use of cellulose nanofibres to reduce the wet strength polymer quantity for development of cleaner filtersJournal of Cleaner Production, 215, 226–23110.1016/j.jclepro.2019.01.017
2019Prathapan, R.; Glatz, B.; Ghosh, A. K.; Michel, S.; Fery, A.; Garnier, G.; Tabor, R.Enhancing printing resolution on hydrophobic polymer surfaces using patterned coatings of cellulose nanocrystalsLangmuir, 3510.1021/acs.langmuir.9b00733
2019Raghuwanshi, V. S.; Garnier, G.Cellulose nano-films as bio-interfaceFrontiers in Chemistry, 7:535fchem-07-00535
2019Raghuwanshi, V. S.; Garnier, G.Characterisation of hydrogels: Linking the nano to the microscaleAdvances in Colloid and Interface Science, 274, 10204410.1016/j.cis.2019.102044
2019Shanmugam, K.; Doosthosseini, H.; Varanasi, S.; Garnier, G.; Batchelor, W.Nanocellulose films as air and water vapour barriers: A recyclable and biodegradable alternative to polyolefin packagingSustainable Materials and Technologies, 22, e0011510.1016/j.susmat.2019.e00115
2019Yuliani, G.; Chaffee, A.; Garnier, G.UV-induced colour generation of pulp and paper mill effluents as a proxy of ligno-cellulosic biorefinery wastewaterJournal of Water Process Engineering, 29, 10078110.1016/j.jwpe.2019.100781
2018Amini, N.; Haritos, V.; Tanksale, A.Microwave-assisted pretreatment of eucalyptus sawdust enhances enzymatic saccharification and maximizes fermentable sugar yieldRenewable Energy (2018)10.1016/j.renene.2018.05.001
2018Garusinghe, U.; Raghuwanshi, V. S.; Batchelor, W.; Garnier, G.Water resistant cellulose–titanium dioxide composites for photocatalysisScientific Reports, 8s41598-018-20569-w
2018Hertaeg, M.; Tabor, R.; Garnier, G.Effect of protein adsorption on the radial wicking of blood droplets in paperJournal of Colloid and Interface Science, 52810.1016/j.jcis.2018.05.037
2018Huang, Z.; Gengenbach, T.; Tian, J.; Shen, W.; Garnier, G.Effect of bovine serum albumin treatment on the aging and activity of antibodies in paper diagnosticsFrontiers in Chemistry, 8(6):16110.3389/fchem.2018.00161
2018Longe, L.; Couvreur, J.; Leriche-Grandchamp, M.; Garnier, G.; Allais, F.; Saito, K.Importance of mediators for lignin degradation by fungal laccaseACS Sustainable Chemistry & Engineering, 6(8), 10097–1010710.1021/acssuschemeng.8b01426
2018Manderson, C.; Mcliesh, H.; Then, W.; Garnier, G.Activity and longevity of antibody in paper-based blood typing diagnosticsFrontiers in Chemistry, 6:19310.3389/fchem.2018.00193
2018Mendoza, L.; Gunawardhana, T.; Batchelor, W.; Garnier, G.Effects of fibre dimension and charge density on nanocellulose gelsJournal of Colloid and Interface Science, 52510.1016/j.jcis.2018.04.077
2018Onur, A.; Ng, A.; Garnier, G.; Batchelor, W.Engineering cellulose fibre inorganic composites for depth filtration and adsorptionSeparation and Purification Technology, 20310.1016/j.seppur.2018.04.038
2018Onur, A.; Ng, A.; Batchelor, W.; Garnier, G.Multi-layer filters: Adsorption and filtration mechanisms for improved separationFrontiers in Chemistry, 6:417fchem-06-00417
2018Raghuwanshi, V. S.; Cohen, Y.; Garnier, G.; Garvey, C. J.; Russell, R. A.; Darwish, T.; Garnier, G.Cellulose dissolution in ionic liquid: Ion binding revealed by neutron scatteringMacromolecules, 51, 7649–765510.1021/acs.macromol.8b01425
2018Raghuwanshi, V. S.; Garusinghe, U.; Raj, P.; Kirby, N.; Hoell, A.; Batchelor, W.; Garnier, G.Cationic polyacrylamide induced nanoparticle assembly in a cellulose nanofiber networkJournal of Colloid and Interface Science, 52910.1016/j.jcis.2018.06.009
2018Shanmugam, K.; Doosthosseini, H.; Varanasi, S.; Garnier, G.; Batchelor, W.Flexible spray coating process for smooth nanocellulose film productionCellulose, 25s10570-018-1677-7
2018Varanasi, S.; Henzel, L.; Mendoza, L.; Prathapan, R.; Batchelor, W.; Tabor, R.; Garnier, G.Pickering emulsions electrostatically stabilized by cellulose nanocrystalsFrontiers in Chemistry, 6:409fchem-06-00409
2018Varanasi, S.; Garusinghe, U.; Simon, G.; Garnier, G.; Batchelor, W.Novel in-situ precipitation process to engineer low permeability porous compositeScientific Reports, 8(1)s41598-018-28786-z