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6篇 您的检索式:作者名="DING Datong"
    题名 作者 年代 出处 被引量
1Confinement-induced morphologies of cylinder-forming asymmetric diblock copolymers显示文摘Yu Bin Jin Qinghua Ding Datong 2008Macromolecules2008,41,11:1
2A novel discrete artificial bee colony algorithm for Rough Set-based feature selection显示文摘Hu Yurong Ding Lixin Xie Datong 2012International Journal of Advancements in Computing Technology2012,4,6:1
3The setting of parame- ters in an improved Ant Colony Optimization algorithm for feature selection显示文摘Hu Yurong Ding Lixin Xie Datong 2012Journal of Competational Information Sys- tems2012,8,19:1
4NMR characterization of absorbed water in equilibrium swollen hydrogel P (AM-NaA)显示文摘Li Baohui Ding Datong Wang Yinong 1999Journal of Applied Polymer Science1999,72,9:1
5SYNTHESIS OF NANOPOROUS SILICA WITH INTERIOR COMPOSITE CELLS WITH SYNTHETIC BLOCK COPOLYPEPTIDE AS TEMPLATE显示文摘Nanoporous silica with unusual interior composite cells was synthesized with synthetic block copolypeptide Phe20-b-PBLG50 as template for the first time. Anilino-methyl triethoxy silane (AMTS) was used as an intermedium to interact with block co-polypeptide Phe20-b-PBLG50 through π-π interaction between the phenyl groups of block copolypeptide and those of AMTS. Meanwhile, AMTS co-condenses together with tetraethoxylsilane (TEOS) after hy-drolysis. The structure of composite vesicles due to the self-assembly of block copolypeptide in the or-ganic solvent was immobilized and transcribed by the formation of silica. The formation of nanopores could be ascribed to the secondary structure of block co-polypeptide and small molecular amine. Our results provide a new avenue to synthesize porous oxide materials with novel interior structures templated by the copolypeptide self-assembly under ambient con-ditions.LIU Yuping ZHOU Huijing SHEN Zhurui LI Liying ZHOU Xingdi SUN Pingchuan YUAN Zhongyong CHEN Tiehong LI Baohui DING Datong 2006Chinese Science Bulletin2006,51,4:0
6Morphological evolution and kinetic enhancement of Li_2Fe_xMn_(1-x)SiO_4/C cathodes for Li-ion battery显示文摘Li_2MnSiO_4-based cathode materials possess reasonable work potentials and high theoretical capacities,while the practical energy/power densities are constrained by their inferior kinetics of Li^+ diffusion.In this work,the Pmn2_1-structure Li_2Fe_xMn_(1-x)SiO_4/C materials were synthesized via a solvothermal method and evaluated as Liion cathode materials,with notable morphological evolutions and tunable crystallographic habits observed after solvothermal process.The Li_2Fe_(0.33)Mn_(0.67)SiO_4/C material delivers an initial reversible capacity of 250.2mAh g^(-1)at 0.1 C(~1.51 Li^+insertion/extraction,1 C=166 mA g^(-1)),excellent high-rate capability(52.2 mAh g^(-1)at 5 C),and good long-term cyclability(64.6%after 196 cycles at 2 C).The enhanced electrochemical properties are attributed to the boosted ion/electron transports induced by preferred morphological and structural characteristics of Li_2Fe_(0.33)Mn_(0.67)SiO_4/C.Datong Zhang Zhengping Ding Shuai Zhao Ying Yang Yiming Feng Lei Xiao Ran Ji Libao Chen Weifeng Wei 2018Progress in Natural Science:Materials International2018,28,5:0
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