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您现在的位置:中国聚合物网 > 资料 > Journal of Polymer Science 的搜索结果 共有结果3133,当前从第151条到第160条,本次搜索耗时0
 
Materials Science and Engineering C 2012, 32, 2589
Openporous microspheres could provide large specific surface areas for cell adhesion and sustained cell growth. Introduction of cell-loaded microspheres into hydrogel might provide a cell-affinitive environment to maintain cell viabilities and improve cell growth in hydrogel system. Here, the open porous poly(ε-caprolactone) (PCL) microspheres were fabricated via the combinated phase separ...
http://www.polymer.cnt//ss/langmeidong/publicationsshow_4145.html
 
Applied Surface Science 2012, 258, 2655
Silver nanoparticles (Ag NPs) were prepared via in-situ reduction of silver nitrate (AgNO3) using polymeric micelles as nanoreactors without any additional reductant. The micelles were constructed from the amphiphilic star-shaped copolymer composed of poly(ε-caprolactone) (PCL) segment, 2-(Dimethylamino)ethyl methacrylate (DMAEMA or DMA) units and oligo(ethylene glycol)monomethyl ether met...
http://www.polymer.cnt//ss/langmeidong/publicationsshow_4137.html
 
Applied Surface Science 2011, 257: 6233-6238.
This article describes the fabrication of hydroxyapatite (HAP) nanocomposites grafted with poly(methyl methacrylate) (PMMA). Surface-initiated atom transfer radical polymerization (ATRP) of methyl methacrylate (MMA) was carried out from hydroxyapatite particles derivatized with ATRP initiators. The structure and properties of the nanocomposites were investigated by thermogravimetric analysis (TGA)...
http://www.polymer.cnt//ss/langmeidong/publicationsshow_2993.html
 
Applied Surface Science 2010, 256, 6107–6112
This article reports on the fabrication of hydroxyapatite (HAP) nanoparticles grafted with poly(methyl methacrylate) (PMMA). HAP nanoparticles were firstly surface-grafted with PMMA via reverse atom transfer radical polymerization (ATRP), and subsequent ATRP allowed additional methyl methacrylate (MMA) grafting. The kinetic studies of reverse ATRP revealed a linear increase of ln([M]0/[M]) with po...
http://www.polymer.cnt//ss/langmeidong/publicationsshow_2376.html
 
Science in China Series B Chemistry 2008, 51(11), 1044-1050
The electron-withdrawing groups (EWGs) in the electrophilic alkenes employed in the Michael addition reaction are almost only CO2R, CN, COR, NO2, and SO2Ph. Although amides (CONR1R2) are also typical electron-withdrawing groups and are of great importance in organic synthesis, they are scarcely employed as the EWGs of the electrophilic alkenes in the Michael addition reaction. In this work, the Mi...
http://www.polymer.cnt//ss/langmeidong/publicationsshow_1627.html
 
Journal of Materials Chemistry A】A Si-doped flexible self-supporting comb-like polyethylene glycol copolymer (si-peg) film as a polymer electrolyte for an all solid-state lithiumion battery,
Abstract: Herein, a self-supporting comb-like Si-PEG copolymer with flexible Si-O-C bonds in the main chain and pending short PEG chains as the side chain was synthesized to improve the low temperature performance and overcome the quandary between good mechanical and electrochemical properties of the polymer electrolyte in lithium-ion batteries. The tensile strength of Si-PEG polymer electrol...
http://www.polymer.cnt//ss/luanshifang/publicationsshow_13321.html
 
35. Isothermal melt and cold crystallization kinetics of poly(aryl ether ether ketone ketone) (PEEKK). Liu TX, Mo ZS, Wang SG, Zhang HF. EUROPEAN POLYMER JOURNAL 33 (9): 1405-1414 SEP 1997.
Isothermal melt and cold crystallization kinetics of PEEKK have been investigated by differential scanning calorimetry in two temperature regions. During the primary crystallization process, the relative crystallinity develops with a time dependence described by the Avrami equation, with exponent n = 2 for both melt and cold crystallization. The activation energies are -544.5 and 466.7 kJ/mol for ...
http://www.polymer.cnt//ss/liutianxi/publicationsshow_158.html
 
2019 international English journal papers
88. Minmin Liu, Linlin Wang, Kangning Zhao, Shanshan Shi, Qinsi Shao, Lei Zhang, Xueliang Sun, Yufeng Zhao, Jiujun Zhang, Atomically Dispersed Metal Catalysts for Oxygen Reduction Reaction: Synthesis, Characterization, Reaction Mechanisms and Electrochemical Energy Applications, Energy & Environmental Science, 2019, DOI: 10.1039/C9EE01722D 87. Ziyang Lu, Bo Wang, Yongfeng Hu, Wei Liu, Y...
http://www.polymer.cnt//ss/yufengzhao/publicationsshow_13980.html
 
2018 international English journal papers
69. Shanshan Shi, Zhiping Li, Yong Sun, Bo Wang, Qiunan Liu, Yanglong Hou, Shifei Huang, Jianyu Huang, Yufeng Zhao, A Covalent Heterostructure of Monodisperse Ni2P Immobilized on N, P-codoped Carbon Nanosheets for High Performance Sodium/Lithium Storage, Nano Energy, 2018, 48,510-517 68. Gao Guofeng, Tie Da, Ma Hao, Yu Haijun, Shi Shanshan, Wang Bo, Xu Shengming, Wang Linlin, Zhao Yufe...
http://www.polymer.cnt//ss/yufengzhao/publicationsshow_12505.html
 
2017 international English journal papers
61.Lu Ziyang, Jing Wang, Huang Shifei, Hou Yanglong, Li Yanguang, Zhao Yueping, Mu Shichun, Zhang Jiujun, Zhao Yufeng, N,B-codoped Defect-rich Graphitic Carbon Nanocages as High Performance Multifunctional Electrocatalysts,Nano Energy, 2017, 42, 334-340. 60.Wang Miao, Jin Fengdan, ZhangXuejiao, Wang Jing, Huang Shifei, Zhang Xinyu, M...
http://www.polymer.cnt//ss/yufengzhao/publicationsshow_10402.html
 
 
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