Publikationer av Eva Malmström Jonsson
Refereegranskade
Artiklar
[1]
T. Todorovic et al., "Chitosan-graft-poly(vinyl acetate) for wood-adhesive applications," International Journal of Adhesion and Adhesives, vol. 135, 2024.
[2]
T. Todorovic et al., "Locust bean gum as an adhesive for wood particleboards," Industrial crops and products (Print), vol. 208, s. 117841, 2024.
[3]
L. Pezzana et al., "Multiple approaches to exploit ferulic acid bio-based epoxy monomer for green thermoset," Industrial crops and products (Print), vol. 212, 2024.
[4]
C. Harder et al., "Poly(sobrerol methacrylate) Colloidal Inks Sprayed onto Cellulose Nanofibril Thin Films for Anticounterfeiting Applications," ACS Applied Nano Materials, vol. 7, no. 9, s. 10840-10851, 2024.
[5]
Å. Jerlhagen, O. R. Wilson och E. Malmström, "Self-Catalyzed Hydrolysis of Nitrile-Containing RAFT Chain-Transfer Agent and Its Impact upon Polymerization Control of Methacrylic Monomers," ACS Macro Letters, vol. 13, no. 5, s. 565-570, 2024.
[6]
M. Mousa et al., "Thermally expandable microspheres based on fully or partially bio-based polymers," Journal of Applied Polymer Science, 2024.
[7]
A. E. Alexakis et al., "2-Methoxy-4-Vinylphenol as a Biobased Monomer Precursor for Thermoplastics and Thermoset Polymers," Polymers, vol. 15, no. 9, 2023.
[8]
A. E. Alexakis, O. R. Wilson och E. Malmström, "Bimodal nanolatexes prepared via polymerization-induced self-assembly : losing control in a controlled manner," Polymer Chemistry, vol. 14, no. 19, s. 2308-2316, 2023.
[9]
M. Mousa et al., "Branched polyesters from radical ring-opening polymerization of cyclic ketene acetals: synthesis, chemical hydrolysis and biodegradation," Polymer Chemistry, vol. 14, no. 47, s. 5154-5165, 2023.
[10]
L. Pezzana et al., "Cationic UV-curing of isosorbide-based epoxy coating reinforced with macadamia nut shell powder," Progress in organic coatings, vol. 185, 2023.
[11]
A. Eliasson et al., "Highly Ductile Cellulose-Rich Papers Obtained by Ultrasonication-Assisted Incorporation of Low Molecular Weight Plasticizers," ACS Sustainable Chemistry and Engineering, vol. 11, no. 24, s. 8836-8846, 2023.
[12]
A. E. Alexakis et al., "Nanolatex architectonics: Influence of cationic charge density and size on their adsorption onto surfaces with a 2D or 3D distribution of anionic groups," Journal of Colloid and Interface Science, vol. 634, s. 610-620, 2023.
[13]
C. Harder et al., "Optical Properties of Slot‐Die Coated Hybrid Colloid/Cellulose‐Nanofibril Thin Films," Advanced Optical Materials, vol. 11, no. 13, 2023.
[14]
R. Telaretti Leggieri et al., "PDMAEMA from alpha to omega chain ends : tools for elucidating the structure of poly(2-(dimethylamino)ethyl methacrylate)," Polymer Chemistry, vol. 14, no. 11, s. 1241-1253, 2023.
[15]
R. Telaretti Leggieri et al., "Polyester-melamine coil coating formulation reinforced with surface-modified cellulose nanofibrils," Progress in organic coatings, vol. 182, 2023.
[16]
I. Sapouna et al., "Structure-property relationship of native-like lignin nanoparticles from softwood and hardwood," Industrial crops and products (Print), vol. 206, 2023.
[17]
T. Todorovic, E. Malmström och L. Fogelström, "Effect of hemicellulose molecular weight on bonding properties in biobased wood adhesives," ACS Sustainable Chemistry and Engineering, vol. 10, no. 47, s. 15372-15379, 2022.
[18]
A. E. Alexakis et al., "Modification of CNF‐Networks by the Addition of Small Amounts of Well‐Defined Rigid Cationic Nanolatexes," Macromolecular Chemistry and Physics, vol. 224, no. 1, s. 2200249-2200249, 2022.
[19]
M. S. Reid et al., "Tunable Adhesion and Interfacial Structure of Layer-by-Layer Assembled Block co-polymer Micelle and Polyelectrolyte Coatings," Advanced Materials Interfaces, vol. 9, no. 17, s. 2200065, 2022.
[20]
T. Todorovic et al., "A fully bio-based wood adhesive valorising hemicellulose-rich sidestreams from the pulp industry," Green Chemistry, vol. 23, no. 9, s. 3322-3333, 2021.
[21]
L. Pezzana et al., "Bio-based monomers for UV-curable coatings : allylation of ferulic acid and investigation of photocured thiol-ene network," Progress in organic coatings, vol. 150, 2021.
[22]
M. Mousa et al., "Biobased Lactones-Exploring Their Free-Radical Polymerization and Polymer Properties," Macromolecules, vol. 54, no. 13, s. 6127-6134, 2021.
[23]
B. L. F. Roy et al., "Grafting of poly(ε-caprolactone) from Abaca cellulose fibers via ring-opening polymerization resulting in facile one-pot biocomposites," SPE Polymers, vol. 2, no. 4, s. 297-310, 2021.
[24]
J. Engström et al., "Investigating the adsorption of anisotropic diblock copolymer worms onto planar silica and nanocellulose surfaces using a quartz crystal microbalance," Polymer Chemistry, vol. 12, no. 42, s. 6088-6100, 2021.
[25]
A. E. Alexakis et al., "Modification of cellulose through physisorption of cationic bio-based nanolatexes - comparing emulsion polymerization and RAFT-mediated polymerization-induced self-assembly," Green Chemistry, vol. 23, no. 5, s. 2113-2122, 2021.
[26]
M. Garg et al., "Moisture uptake in nanocellulose : the effects of relative humidity, temperature and degree of crystallinity," Cellulose, vol. 28, no. 14, s. 9007-9021, 2021.
[27]
Y. Zhang, "Novel Therapeutic Platform of Micelles and Nanogels from Dopa-Functionalized Triblock Copolymers," Small, vol. 17, no. 17, s. 2007305, 2021.
[28]
A. Stamm et al., "Pinene-Based Oxidative Synthetic Toolbox for Scalable Polyester Synthesis," JACS Au, vol. 1, no. 11, s. 1949-1960, 2021.
[29]
M. Nordenström et al., "Redispersion Strategies for Dried Cellulose Nanofibrils," ACS Sustainable Chemistry and Engineering, vol. 9, no. 33, s. 11003-11010, 2021.
[30]
L. Pezzana et al., "UV-Curable Bio-Based Polymers Derived from Industrial Pulp and Paper Processes," Polymers, vol. 13, no. 9, 2021.
[31]
J. Engström et al., "Core–Shell Nanoparticle Interface and Wetting Properties," Advanced Functional Materials, vol. 30, no. 15, 2020.
[32]
E. C. C. Santos et al., "Current Cellulose Nanofibrils and Cellulose Nanocrystals as Water Purification Functional Membrane Materials," Journal of Environmental Science and Management, s. 48-64, 2020.
[33]
J. Engström et al., "In situ encapsulation of Nile red or Doxorubicin during RAFT-mediated emulsion polymerization via polymerization-induced self-assembly for biomedical applications," Macromolecular Chemistry and Physics, 2020.
[34]
W. Farhat et al., "Lactone monomers obtained by enzyme catalysis and their use in reversible thermoresponsive networks," Journal of Applied Polymer Science, vol. 137, no. 18, 2020.
[35]
J. Engström, A. M. Jimenez och E. Malmström, "Nanoparticle rearrangement under stress in networks of cellulose nanofibrils using in situ SAXS during tensile testing," Nanoscale, vol. 12, no. 11, s. 6462-6471, 2020.
[36]
L. Griveau et al., "Synergetic Effect of Water-Soluble PEG-Based Macromonomers and Cellulose Nanocrystals for the Stabilization of PMMA Latexes by Surfactant-Free Emulsion Polymerization," Biomacromolecules, vol. 21, no. 11, s. 4479-4491, 2020.
[37]
A. Stamm et al., "A retrobiosynthesis-based route to generate pinene-derived polyesters," ChemBioChem, vol. 20, s. 1664-1671, 2019.
[38]
T. Kaldéus et al., "All-Aqueous SI-ARGET ATRP from Cellulose Nanofibrils Using Hydrophilic and Hydrophobic Monomers," Biomacromolecules, vol. 20, no. 5, s. 1937-1943, 2019.
[39]
C. Sanchez et al., "Characterization of Reduced and Surface-Modified Graphene Oxide in Poly(Ethylene-co-Butyl Acrylate) Composites for Electrical Applications," Polymers, vol. 11, no. 4, 2019.
[40]
A. Stamm et al., "Chemo- enzymatic pathways toward pinene- based renewable materials," Green Chemistry, vol. 21, no. 10, s. 2720-2731, 2019.
[41]
S. Brännström, M. Johansson och E. Malmström, "Enzymatically Synthesized Vinyl Ether-Disulfide Monomer Enablingan Orthogonal Combination of Free Radical and Cationic Chemistry toward Sustainable Functional Networks," Biomacromolecules, vol. 20, no. 3, s. 1308-1316, 2019.
[42]
T. Kaldéus et al., "Molecular Engineering of the Cellulose-Poly(Caprolactone) Bio-Nanocomposite Interface by Reactive Amphiphilic Copolymer Nanoparticles," ACS NANO, vol. 13, no. 6, s. 6409-6420, 2019.
[43]
J. Engström et al., "Tailoring adhesion of anionic surfaces using cationic PISA-latexes – towards tough nanocellulose materials in the wet state," Nanoscale, vol. 11, s. 4287-4302, 2019.
[44]
G. Lo Re et al., "Improved Cellulose Nanofibril Dispersion in Melt-Processed Polycaprolactone Nanocomposites by a Latex-Mediated Interphase and Wet Feeding as LDPE Alternative," ACS Applied Nano Materials, vol. 1, no. 6, s. 2669-2677, 2018.
[45]
T. Kaldéus et al., "Insights into the EDC-mediated PEGylation of cellulose nanofibrils and their colloidal stability," Carbohydrate Polymers, vol. 181, s. 871-878, 2018.
[46]
S. Brännström et al., "Itaconate based polyesters : Selectivity and performance of esterification catalysts," European Polymer Journal, vol. 103, s. 370-377, 2018.
[47]
M. Finnveden et al., "Novel sustainable synthesis of vinyl ether ester building blocks, directly from carboxylic acids and the corresponding hydroxyl vinyl ether, and their photopolymerization," RSC Advances, vol. 8, no. 44, s. 24716-24723, 2018.
[48]
T. Kaldéus et al., "One-pot preparation of bi-functional cellulose nanofibrils," Cellulose, vol. 25, no. 12, s. 7031-7042, 2018.
[49]
S. Brännström et al., "Tailoring Thermo-Mechanical Properties of Cationically UV-Cured Systems by a Rational Design of Vinyl Ether Ester Oligomers using Enzyme Catalysis," Macromolecular Chemistry and Physics, vol. 219, no. 21, 2018.
[50]
S. Brännström, E. Malmström och M. Johansson, "Biobased UV-curable coatings based on itaconic acid," Journal of Coatings Technology Research, vol. 14, no. 4, s. 851-861, 2017.
[51]
F. Hatton et al., "Biomimetic adsorption of zwitterionic-xyloglucan block copolymers to CNF : towards tailored super-absorbing cellulose materials," RSC Advances, vol. 7, no. 24, s. 14947-14958, 2017.
[52]
R. Nikjoo et al., "Comparison of Oil-impregnated Papers with SiO2 and ZnO Nanoparticles or High Lignin Content, for the Effect of Superimposed Impulse Voltage on AC Surface PD," IEEE transactions on dielectrics and electrical insulation, vol. 24, no. 3, s. 1726-1734, 2017.
[53]
A. Boujemaoui et al., "Polycaprolactone Nanocomposites Reinforced with Cellulose Nanocrystals Surface-Modified via Covalent Grafting or Physisorption : A Comparative Study," ACS Applied Materials and Interfaces, vol. 9, no. 40, s. 35305-35318, 2017.
[54]
M. Wåhlander et al., "Reduced and Surface-Modified Graphene Oxide with Nonlinear Resistivity," Macromolecular rapid communications, vol. 38, no. 16, 2017.
[55]
J. Engström et al., "Soft and rigid core latex nanoparticles prepared by RAFT-mediated surfactant-free emulsion polymerization for cellulose modification-a comparative study," Polymer Chemistry, vol. 8, no. 6, s. 1061-1073, 2017.
[56]
M. Wåhlander et al., "Tailoring Dielectric Properties using Designed Polymer-Grafted ZnO Nanoparticles in Silicone Rubber," Journal of Materials Chemistry A, vol. 5, s. 14241-14258, 2017.
[57]
M. Willgert et al., "Copper-based dye-sensitized solar cells with quasi-solid nano cellulose composite electrolytes," RSC Advances, vol. 6, no. 61, s. 56571-56579, 2016.
[58]
M. Wåhlander et al., "Correction: Hydrophobic matrix-free graphene-oxide composites with isotropic and nematic states," Nanoscale, vol. 8, s. 13522-13522, 2016.
[59]
M. Wåhlander et al., "Hydrophobic matrix-free graphene-oxide composites with isotropic and nematic states," Nanoscale, vol. 8, s. 14730-14745, 2016.
[60]
D. Liu et al., "Interactions between a phenolic antioxidant, moisture, peroxide and crosslinking by-products with metal oxide nanoparticles in branched polyethylene," Polymer degradation and stability, vol. 125, s. 21-32, 2016.
[61]
A. Boujemaoui et al., "SI-RAFT/MADIX polymerization of vinyl acetate on cellulose nanocrystals for nanocomposite applications," Polymer, vol. 99, s. 240-249, 2016.
[62]
F. L. Hatton et al., "Xyloglucan-Functional Latex Particles via RAFT-Mediated Emulsion Polymerization for the Biomimetic Modification of Cellulose," Biomacromolecules, vol. 17, no. 4, s. 1414-1424, 2016.
[63]
E. Larsson et al., "Cellulose grafting by photoinduced controlled radical polymerisation," Polymer Chemistry, vol. 6, no. 10, s. 1865-1874, 2015.
[64]
C. Porsch et al., "Disulfide-Functionalized Unimolecular Micelles as Selective Redox-Responsive Nanocarriers," Biomacromolecules, vol. 16, no. 9, s. 2872-2883, 2015.
[65]
Y. Zhang et al., "Histamine-functionalized copolymer micelles as a drug delivery system in 2D and 3D models of breast cancer," Journal of materials chemistry. B, vol. 3, no. 12, s. 2472-2486, 2015.
[66]
C. C. Sanchez et al., "Novel Nanocomposites of Poly(lauryl methacrylate)-Grafted Al2O3 Nanoparticles in LDPE," ACS Applied Materials and Interfaces, vol. 7, no. 46, s. 25669-25678, 2015.
[67]
C. Bruce et al., "Paper-sheet biocomposites based on wood pulp grafted with poly(epsilon-caprolactone)," Journal of Applied Polymer Science, vol. 132, no. 23, 2015.
[68]
A. Boujemaoui et al., "Preparation and characterization of functionalized cellulose nanocrystals," Carbohydrate Polymers, vol. 115, s. 457-464, 2015.
[69]
L. Carlsson et al., "Surface characteristics of cellulose nanoparticles grafted by surface-initiated ring-opening polymerization of epsilon-caprolactone," Cellulose, vol. 22, no. 2, s. 1063-1074, 2015.
[70]
F. L. Hatton, E. Malmström och A. Carlmark, "Tailor-made copolymers for the adsorption to cellulosic surfaces," European Polymer Journal, vol. 65, no. SI, s. 325-339, 2015.
[71]
E. Larsson et al., "Thermoresponsive cryogels reinforced with cellulose nanocrystals," RSC Advances, vol. 5, no. 95, s. 77643-77650, 2015.
[72]
S. Hansson et al., "Toward Industrial Grafting of Cellulosic Substrates via ARGET ATRP," Journal of Applied Polymer Science, vol. 132, no. 6, s. 41434, 2015.
[73]
E. Norström et al., "Xylan - A green binder for wood adhesives," European Polymer Journal, vol. 67, s. 483-493, 2015.
[74]
M. Willgert et al., "Cellulose nanofibril reinforced composite electrolytes for lithium ion battery applications," Journal of Materials Chemistry A, vol. 2, no. 33, s. 13556-13564, 2014.
[75]
E. Norström et al., "Gum dispersions as environmentally friendly wood adhesives," Industrial crops and products (Print), vol. 52, s. 736-744, 2014.
[76]
L. Carlsson et al., "Modification of cellulose model surfaces by cationic polymer latexes prepared by RAFT-mediated surfactant-free emulsion polymerization," Polymer Chemistry, vol. 5, no. 20, s. 6076-6086, 2014.
[77]
M. Wåhlander et al., "Polymer-grafted Al2O3-nanoparticles for controlled dispersion in poly(ethylene-co-butyl acrylate) nanocomposites," Polymer, vol. 55, no. 9, s. 2125-2138, 2014.
[78]
C. Porsch et al., "Toward Unimolecular Micelles with Tunable Dimensions Using Hyperbranched Dendritic-Linear Polymers," Biomacromolecules, vol. 15, no. 6, s. 2235-2245, 2014.
[79]
M. Ek et al., "WOBAMA : wood based materials and fuels," Cellulose Chemistry and Technology, vol. 48, no. 9-10, s. 773-779, 2014.
[80]
C. Bruce et al., "Well-defined ABA- and BAB-type block copolymers of PDMAEMA and PCL," RSC Advances, vol. 4, no. 49, s. 25809-25818, 2014.
[81]
P. Nordqvist et al., "Characterization of hydrolyzed or heat treated wheat gluten by SE-HPLC and 13C NMR : Correlation with wood bonding performance," Industrial crops and products (Print), vol. 51, s. 51-61, 2013.
[82]
A. Carlmark, E. Malmström och M. Malkoch, "Dendritic architectures based on bis-MPA : functional polymeric scaffolds for application-driven research," Chemical Society Reviews, vol. 42, no. 13, s. 5858-5879, 2013.
[83]
S. Hansson et al., "Grafting Efficiency of Synthetic Polymers onto Biomaterials : A comparative study of grafting- from versus grafting- to," Biomacromolecules, vol. 14, no. 1, s. 64-74, 2013.
[84]
C. Porsch et al., "In Vitro Evaluation of Non-Protein Adsorbing Breast Cancer Theranostics Based on 19F-Polymer Containing Nanoparticles," Particle & particle systems characterization, vol. 30, no. 4, s. 381-390, 2013.
[85]
N. Nordgren et al., "Nanobiocomposite Adhesion : Role of Graft Length and Temperature in a Hybrid Biomimetic Approach," Biomacromolecules, vol. 14, no. 4, s. 1003-1009, 2013.
[86]
P. Nordqvist et al., "Plant proteins as wood adhesives : Bonding performance at the macro- and nanoscale," Industrial crops and products (Print), vol. 44, s. 246-252, 2013.
[87]
G. Vamvounis et al., "Synthesis and properties of poly(3-n-dodecylthiophene) modified thermally expandable microspheres," European Polymer Journal, vol. 49, no. 6, s. 1503-1509, 2013.
[88]
P. Nordqvist et al., "Adhesive properties of wheat gluten after enzymatic hydrolysis or heat treatment - A comparative study," Industrial crops and products (Print), vol. 38, no. 1, s. 139-145, 2012.
[89]
E. Malmström och A. Carlmark, "Controlled grafting of cellulose fibres : an outlook beyond paper and cardboard," Polymer Chemistry, vol. 3, no. 7, s. 1702-1713, 2012.
[90]
A. Boujemaoui et al., "Facile Preparation Route for Nanostructured Composites : Surface-Initiated Ring-Opening Polymerization of epsilon-Caprolactone from High-Surface-Area Nanopaper," ACS Applied Materials and Interfaces, vol. 4, no. 6, s. 3191-3198, 2012.
[91]
A. Carlmark, E. Larsson och E. Malmström, "Grafting of cellulose by ring-opening polymerisation - A review," European Polymer Journal, vol. 48, no. 10, s. 1646-1659, 2012.
[92]
S. Utsel et al., "Physical tuning of cellulose-polymer interactions utilizing cationic block copolymers based on PCL and quaternized PDMAEMA," ACS Applied Materials and Interfaces, vol. 4, no. 12, s. 6796-6807, 2012.
[93]
D. Nyström et al., "Solution-processed superhydrophobic conjugated polymer films," Soft Matter, vol. 8, no. 21, s. 5753-5755, 2012.
[94]
L. Carlsson, E. Malmström och A. Carlmark, "Surface-initiated ring-opening metathesis polymerisation from cellulose fibres," POLYM CHEM-UK, vol. 3, no. 3, s. 727-733, 2012.
[95]
L. Carlsson et al., "Surface-initiated ring-opening polymerization from cellulose model surfaces monitored by a Quartz Crystal Microbalance," Soft Matter, vol. 8, no. 2, s. 512-517, 2012.
[96]
S. Utsel et al., "Synthesis, adsorption and adhesive properties of a cationic amphiphilic block copolymer for use as compatibilizer in composites," European Polymer Journal, vol. 48, no. 7, s. 1195-1204, 2012.
[97]
S. Hansson et al., "Visualization of poly(methyl methacrylate) (PMMA) grafts on cellulose via high-resolution FT-IR microscopy imaging," Polymer Chemistry, vol. 3, no. 2, s. 307-309, 2012.
[98]
P. Nordqvist et al., "Wheat Gluten Fractions as Wood Adhesives-Glutenins Versus Gliadins," Journal of Applied Polymer Science, vol. 123, no. 3, s. 1530-1538, 2012.
[99]
E. E. Malmström et al., "ATRP for interfacial tailoring of Al(2)O(3) nanoparticles to be used in insulating materials," Abstracts of Papers of the American Chemical Society, vol. 242, s. 538-POLY, 2011.
[100]
S. Hansson et al., "Assessing initiator content by cleavage of polymers grafted via ARGET ATRP," Abstracts of Papers of the American Chemical Society, vol. 242, 2011.
[101]
M. I. Montañez et al., "Bifunctional Dendronized Cellulose Surfaces as Biosensors," Biomacromolecules, vol. 12, no. 6, s. 2114-2125, 2011.
[102]
M. Rahm, E. Malmström och C. Eldsäter, "Design of an Ammonium Dinitramide Compatible Polymer Matrix," Journal of Applied Polymer Science, vol. 122, no. 1, s. 1-11, 2011.
[103]
S. Harrisson et al., "Hybrid Rigid/Soft and Biologic/Synthetic Materials : Polymers Grafted onto Cellulose Microcrystals," Biomacromolecules, vol. 12, no. 4, s. 1214-1223, 2011.
[104]
M. Jonsson et al., "Increased Onset Temperature of Expansion in Thermally Expandable Microspheres from Combination of Crosslinking Agents," Journal of Applied Polymer Science, vol. 121, no. 1, s. 369-375, 2011.
[105]
H. Bergenudd, M. Jonsson och E. Malmström, "Investigation of iron complexes in ATRP : Indications of different iron species in normal and reverse ATRP," Journal of Molecular Catalysis A : Chemical, vol. 346, no. 1-2, s. 20-28, 2011.
[106]
H. Lönnberg et al., "Investigation of the graft length impact on the interfacial toughness in a cellulose/poly(ε-caprolactone) bilayer laminate," Composites Science And Technology, vol. 71, no. 1, s. 9-12, 2011.
[107]
M. G. Eriksson et al., "One-pot enzymatic polycondensation to telechelic methacrylate-functional oligoesters used for film formation," POLYM CHEM, vol. 2, no. 3, s. 714-719, 2011.
[108]
H. Bergenudd, M. Jonsson och E. Malmström, "Predicting the Limit of Control in the ATRP Process : Results from Kinetic Simulations," Macromolecular Theory and Simulations, vol. 20, no. 9, s. 814-825, 2011.
[109]
S. Hansson et al., "Selective cleavage of polymer grafts from solid surfaces : assessment of initiator content and polymer characteristics," POLYM CHEM, vol. 2, no. 3, s. 556-558, 2011.
[110]
J. J. Peterson et al., "Surface-Grafted Conjugated Polymers for Hybrid Cellulose Materials," Journal of Polymer Science Part A : Polymer Chemistry, vol. 49, no. 14, s. 3004-3013, 2011.
[111]
J. J. Peterson et al., "Surface-grafted conjugated polymers for hybrid cellulose materials," Abstracts of Papers of the American Chemical Society, vol. 242, s. 351-POLY, 2011.
[112]
A. E. Carlmark, L. Carlsson och E. E. Malmström, "Surface-initiated ring-opening metathesis polymerization from cellulose fibers," Abstracts of Papers of the American Chemical Society, vol. 242, s. 432-POLY, 2011.
[113]
H. Lönnberg et al., "Synthesis of Polycaprolactone-Grafted Microfibrillated Cellulose for Use in Novel Bionanocomposites-Influence of the Graft Length on the Mechanical Properties," ACS APPLIED MATERIALS & INTERFACES, vol. 3, no. 5, s. 1426-1433, 2011.
[114]
C. Porsch et al., "Tailoring thermo-responsive nanoscopic assemblies for biomedical applications," Abstracts of Papers of the American Chemical Society, vol. 242, s. 311-POLY, 2011.
[115]
C. Porsch et al., "Thermo-responsive cellulose-based architectures : tailoring LCST using poly(ethylene glycol) methacrylates," POLYMER CHEMISTRY, vol. 2, no. 5, s. 1114-1123, 2011.
[116]
D. Nyström et al., "Biomimetic Surface Modification of Honeycomb Films via a "Grafting From" Approach," Langmuir, vol. 26, no. 15, s. 12748-12754, 2010.
[117]
P. Nordqvist, F. Khabbaz och E. Malmström, "Comparing bond strength and water resistance of alkali-modified soy protein isolate and wheat gluten adhesives," International Journal of Adhesion and Adhesives, vol. 30, no. 2, s. 72-79, 2010.
[118]
L. Fogelström et al., "Hard and Flexible Nanocomposite Coatings using Nanoclay‐filled Hyperbranched Polymers," ACS Applied Materials and Interfaces, vol. 2, no. 6, s. 1679-1684, 2010.
[119]
M. Jonsson et al., "Influence of Crosslinking on the Characteristics of Thermally Expandable Microspheres Expanding at High Temperature," Journal of Applied Polymer Science, vol. 118, no. 2, s. 1219-1229, 2010.
[120]
M. Eriksson et al., "One-Pot Enzymatic Route to Tetraallyl Ether Functional Oligoesters : Synthesis, UV Curing, and Characterization," Journal of Polymer Science Part A : Polymer Chemistry, vol. 48, no. 23, s. 5289-5297, 2010.
[121]
P. Antoni et al., "Pushing the Limits for Thiol-Ene and CuAAC Reactions : Synthesis of a 6th Generation Dendrimer in a Single Day," Macromolecules, vol. 43, no. 16, s. 6625-6631, 2010.
[122]
M. Jonsson et al., "Thermally Expandable Microspheres with Excellent Expansion Characteristics at High Temperature," Journal of Applied Polymer Science, vol. 117, no. 1, s. 384-392, 2010.
[123]
S. Utsel et al., "Thermoresponsive nanocomposites from multilayers of nanofibrillated cellulose and specially designed N-isopropylacrylamide based polymers," Soft Matter, vol. 6, no. 2, s. 342-352, 2010.
[124]
S. M. Trey et al., "Thiol-ene networks and reactive surfaces via photoinduced polymerization of allyl ether functional hyperbranched polymers," Progress in organic coatings, vol. 67, no. 3, s. 348-355, 2010.
[125]
S. M. Trey et al., "Thiol-ene networks and reactive surfaces via photoinduced polymerization of allyl ether functional hyperbranched polymers," Progress in organic coatings, vol. 68, no. 1-2, s. 151-158, 2010.
[126]
S. Hansson et al., "ARGET ATRP for Versatile Grafting of Cellulose Using Various Monomers," ACS Applied Materials & Interfaces, vol. 1, no. 11, s. 2651-2659, 2009.
[127]
N. Nordgren et al., "Adhesion Dynamics for Cellulose Nano-Composites," ACS applied Materials & Interfaces, s. 2098-2103, 2009.
[128]
C. Nilsson et al., "Dendrimers in Thiol-ene Crosslinked Networks and the Effect on Subsequent Generations on Thermoset Properties," Journal of Polymer Science Part A : Polymer Chemistry, vol. 47, no. 2, s. 589-601, 2009.
[129]
P.-A. Bouit et al., "Dendron-decorated cyanine dyes for optical limiting applications in the range of telecommunication wavelengths," New Journal of Chemistry, vol. 33, no. 5, s. 964-968, 2009.
[130]
M. Eriksson et al., "Enzymatic One-Pot Route to Telechelic Polypentadecalactone Epoxide : Synthesis, UV Curing, and Characterization," Biomacromolecules, vol. 10, no. 11, s. 3108-3113, 2009.
[131]
H. Bergenudd et al., "Heterogeneous iron(II)-chloride mediated radical polymerization of styrene," Journal of Molecular Catalysis A : Chemical, vol. 306, no. 1-2, s. 69-76, 2009.
[132]
C. Nilsson et al., "Methacrylated Dendrimers in Thiol-Methacrylate Networks and the Effect of Conversion on the Thermoset Properties," Journal of Polymer Science Part A : Polymer Chemistry, vol. 47, no. 21, s. 5815-5826, 2009.
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L. Fogelström et al., "A fully green wood adhesive based on hemicelluloses derived from pulp processes," Abstracts of Papers of the American Chemical Society, vol. 257, 2019.
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A. E. Alexakis, A. Riazanova och E. Malmström, "Bio-based nanolatexes prepared via polymerization-induced self-assembly: targeting heavy metal capturing applications," (Manuskript).
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M. Rahm, E. Malmström och C. Eldsäter, "Design of an Ammonium Dinitramide Compatible Polymer Matrix," (Manuskript).
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T. Todorovic, E. Malmström och L. Fogelström, "Effect of hemicellulose structure on bonding properties in wood adhesives," (Manuskript).
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A. Träger et al., "Enhanced toolbox to tailor theproperties of Layer‐by‐Layer assembled triblock copolymer films," (Manuskript).
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D. Nyström et al., "Honeycomb Patterned Membranes from Polymer Modified Silica Nanoparticles," (Manuskript).
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C. Cobo Sanchez och E. Malmström, "Matrix-free Nanocomposites based on Poly(lauryl methacrylate)-Grafted Nanoparticles: Effect of Graft Length and Grafting Density," (Manuskript).
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C. Nilsson, M. K. G. Johansson och E. E. Malmström, "Physical and Rheological Behaviour of Aliphatic Polyester Dendrimers in Bulk and the Effect of Polar End Groups," (Manuskript).
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R. Telaretti Leggieri et al., "Polyester–melamine coil coating formulation reinforced with surface-modified cellulose nanofibrils," (Manuskript).
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A. E. Alexakis och E. Malmström, "pH-Responsive nanolatexes stabilized by statistical copolymers obtained by RAFT-mediated PISA," (Manuskript).
Patent
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2024-11-21 00:26:09