国家重点基础研究发展计划(s2012CB821500)

作品数:3被引量:1H指数:1
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相关期刊:《Chinese Journal of Polymer Science》《Chinese Physics B》更多>>
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Effect of Branching Architecture on Glass Transition Behavior of Hyperbranched Copolystyrenes:the Experiment and Simulation Studies
《Chinese Journal of Polymer Science》2016年第1期77-87,共11页Xiang Luo Shi-jie Xie 黄卫 Bo-na Dai 吕中元 De-yue Yan 
financially supported by the National Basic Research Program(Nos.2012CB821500 and 2013CB834506);the National Natural Science Foundation of China(Nos.91127047;21174086 and 21274167)
By controlling the feed ratio of CMS/styrene and the polymerization time, a series of hyperbranched copolystyrenes(HBCPS) were synthesized with comparable weight-averaged molecular weights(Mw) but different degree...
关键词:All-atom molecular dynamics simulation Degree of branching Glass transition temperature Hyperbranched copolystyrene 
Theoretical insights into the formation of thiolate-protected nanoparticles from gold(Ⅲ) chloride
《Chinese Physics B》2014年第9期522-527,共6页张学娜 汪蓉 薛奇 
supported by the National Basic Research Program of China(Grant Nos.2012CB821500 and 2010CB923303);the National Natural Science Foundation of China(Grant Nos.51133002 and 21074053);the Program for Changjiang Scholars and Innovative Research Team in University,China
Reaction pathways for the formation of thiolate-gold nanoparticles are investigated by density functional theory (DFT) and a new mechanism upon solvent polarity and tetraalkylammonium is obtained. In solvents with h...
关键词:NANOPARTICLE Brust-Schiffrin method mechanism PRECURSOR 
CAPABILITY OF DNA-FUELED MOLECULAR MACHINE IN TUNING ASSOCIATION RATE OF DNA-FUNCTIONALIZED GOLD NANOPARTICLES被引量:1
《Chinese Journal of Polymer Science》2013年第9期1183-1183,1184-1189,共7页Ting-jie Song Hao-jun Liang 
supported by the National Natural Science Foundation of China (Nos. 20934004 and 91127046);the National Basic Research Program of China (NBRPC) (Nos. 2012CB821500 and 2010CB934500)
The capability of our newly developed DNA-machine-driven strategy in tuning the association rate of DNA- AuNPs was compared with that of linker-addition strategy which has potential practical applications in different...
关键词:Assembly DNA ENHANCING KINETICS Nanoparticle. 
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