1 |
The crystallization behavior of poly(l-lactide)/poly(d-lactide) blends: effect of stirring time during solution mixing Shao J, Xu LL, Pu SZ, Hou HQ Polymer Bulletin, 78(1), 147, 2021 |
2 |
Synthesis and properties of multi-armed enantiomeric polylactide-polycaprolactone block copolymers Im D, Lee S, Gavande V, Lee H, Lee CH, Lee WK Molecular Crystals and Liquid Crystals, 706(1), 108, 2020 |
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Highly toughened and heat-resistant poly(L-lactide) materials through interfacial interaction control via chemical structure of biodegradable elastomer Si WJ, Yang L, Zhu J, Li YD, Zeng JB Applied Surface Science, 483, 1090, 2019 |
4 |
Miktoarm star-shaped poly(lactic acid) copolymer: Synthesis and stereocomplex crystallization behavior Xie PF, Wang J, Li JB, Cheng Q, Zhou KY, Ren J Journal of Polymer Science Part A: Polymer Chemistry, 57(7), 814, 2019 |
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Hydrogen bonding assists stereocomplexation in poly(L-lactic acid)/poly(D-lactic acid) racemic blends Li ZL, Zhang M, Fan X, Ye XX, Zeng Y, Zhou HJ, Guo WJ, Ma Y, Shao J, Yan C Journal of Polymer Science Part B: Polymer Physics, 57(2), 83, 2019 |
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Synthesis and properties of block copolymers of enantiomeric polylactide and biopolyester Lee S, Jin Y, Lim KT, Lee CH, Chun JH, Lee WK Molecular Crystals and Liquid Crystals, 688(1), 14, 2019 |
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Achieving all-polylactide fibers with significantly enhanced heat resistance and tensile strength via in situ formation of nanofibrilized stereocomplex polylactide Zhang HX, Bai HW, Deng SH, Liu ZW, Zhang Q, Fu Q Polymer, 166, 13, 2019 |
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A promising strategy for fabricating high-performance stereocomplex-type polylactide products via carbon nanotubes-assisted low-temperature sintering He SW, Bai HW, Bai DY, Ju YL, Zhang Q, Fu Q Polymer, 162, 50, 2019 |
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An efficient, food contact accelerator for stereocomplexation of high-molecular-weight poly(L-lactide)/ poly(D-lactide) blend under nonisothermal crystallization Chen Y, Hua WQ, Zhang ZC, Xu JZ, Bian FG, Zhong GJ, Xu L, Li ZM Polymer, 170, 54, 2019 |
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Stereocomplex-type polylactide with bimodal melting temperature distribution: Toward desirable melt-processability and thermomechanical performance Liu ZW, Fu MR, Ling FW, Sui GP, Bai HW, Zhang Q, Fu Q Polymer, 169, 21, 2019 |