John F. Kadla
Affiliations: | 2003-2012 | Wood Science and Technology | University of British Columbia, Vancouver, Vancouver, BC, Canada |
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Publications
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Chang FC, Kadla JF, Lam F. (2016) The effects of wood flour content and coupling agent on the dynamic mechanical and relaxation properties of wood-plastic composites European Journal of Wood and Wood Products. 74: 23-30 |
Dodd AP, Kadla JF, Straus SK. (2015) Characterization of fractions obtained from two industrial softwood kraft lignins Acs Sustainable Chemistry and Engineering. 3: 103-110 |
Korehei R, Olson J, Ko F, et al. (2015) Influence of the solvent and nonsolvent composition on the electrospinning of a cellulose acetate ternary system Journal of Applied Polymer Science. 132 |
Korehei R, Kadla JF. (2014) Encapsulation of T4 bacteriophage in electrospun poly(ethylene oxide)/cellulose diacetate fibers. Carbohydrate Polymers. 100: 150-7 |
Gao G, Xu WZ, Kadla JF. (2014) Reversible ph-responsive hydrogels of softwood kraft lignin and poly[(2-dimethylamino)ethyl methacrylate]-based polymers Journal of Wood Chemistry and Technology. 35: 73-90 |
Gao G, Karaaslan MA, Kadla JF, et al. (2014) Enzymatic synthesis of ionic responsive lignin nanofibres through surface poly(N-isopropylacrylamide) immobilization Green Chemistry. 16: 3890-3898 |
Dallmeyer I, Ko F, Kadla JF. (2014) Correlation of elongational fluid properties to fiber diameter in electrospinning of softwood kraft lignin solutions Industrial and Engineering Chemistry Research. 53: 2697-2705 |
Gao G, Karaaslan MA, Kadla JF. (2014) Hydrogen-bonding based reversible polymer networks based on kraft lignin and poly(2-(dimethylamino)ethyl methacrylate) series polymers Macromolecular Materials and Engineering. 299: 990-1002 |
Grigsby WJ, Kadla JF. (2014) Evaluating poly(lactic acid) fiber reinforcement with modified tannins Macromolecular Materials and Engineering. 299: 368-378 |
Dallmeyer I, Lin LT, Li Y, et al. (2014) Preparation and characterization of interconnected, Kraft lignin-based carbon fibrous materials by electrospinning Macromolecular Materials and Engineering. 299: 540-551 |