Jungki Kim, Ph.D.

Affiliations: 
Chemical and Biological Engineering Northwestern University, Evanston, IL 
Area:
polymers
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"Jungki Kim"
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John M. Torkelson grad student 2007 Northwestern
 (Investigation on the synthesis, characterization and application of a new type of copolymer: Gradient copolymers made by controlled radical polymerization.)
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Publications

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Mok MM, Kim J, Marrou SR, et al. (2010) Ellipsometry measurements of glass transition breadth in bulk films of random, block, and gradient copolymers. The European Physical Journal. E, Soft Matter. 31: 239-52
Yuan W, Mok MM, Kim J, et al. (2010) Behavior of gradient copolymers at liquid/liquid interfaces. Langmuir : the Acs Journal of Surfaces and Colloids. 26: 3261-7
Mok MM, Kim J, Wong CLH, et al. (2009) Glass transition breadths and composition profiles of weakly, moderately, and strongly segregating gradient copolymers: experimental results and calculations from self-consistent mean-field theory Macromolecules. 42: 7863-7876
Kim J, Sandoval RW, Dettmer CM, et al. (2008) Compatibilized polymer blends with nanoscale or sub-micron dispersed phases achieved by hydrogen-bonding effects: Block copolymer vs blocky gradient copolymer addition Polymer. 49: 2686-2697
Sandoval RW, Williams DE, Kim J, et al. (2008) Critical micelle concentrations of block and gradient copolymers in homopolymer: Effects of sequence distribution, composition, and molecular weight Journal of Polymer Science, Part B: Polymer Physics. 46: 2672-2682
Mok MM, Kim J, Torkelson JM. (2008) Gradient copolymers with broad glass transition temperature regions: Design of purely interphase compositions for damping applications Journal of Polymer Science, Part B: Polymer Physics. 46: 48-58
Wong CLH, Kim J, Roth CB, et al. (2007) Comparison of critical micelle concentrations of gradient copolymer and block copolymer in homopolymer: Novel characterization by intrinsic fluorescence Macromolecules. 40: 5631-5633
Wong CLH, Kim J, Torkelson JM. (2007) Breadth of glass transition temperature in styrene/ acrylic acid block, random, and gradient copolymers: Unusual sequence distribution effects Journal of Polymer Science, Part B: Polymer Physics. 45: 2842-2849
Kim J, Mok MM, Sandoval RW, et al. (2006) Uniquely broad glass transition temperatures of gradient copolymers relative to random and block copolymers containing repulsive comonomers Macromolecules. 39: 6152-6160
Tao Y, Kim J, Torkelson JM. (2006) Achievement of quasi-nanostructured polymer blends by solid-state shear pulverization and compatibilization by gradient copolymer addition Polymer. 47: 6773-6781
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