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9篇 您的检索式:作者名="X.N. Cheng"
    题名 作者 年代 出处 被引量
1EFFECTS OF DIFFERENT FUNCTIONAL GROUP-CONTAINING ORGANICS ON MORPHOLOGY-CONTROLLED SYNTHESIS OF SILVER NANOPARTICLES AT ROOM TEMPERATURE显示文摘Silver nanoparticles with average particles sizes ranging from 2 to 131nm were manipulatively synthesized starting from silver nitrate using different functional group-containing organic modifiers at room temperature. The effects of the organic modifiers on the morphology of the resulting silver nanoparticles were strongly dependent on the intrinsic properties of the functional groups and the reducibility of the reductant. Numerous ether bonds (-O-) present in polyethylene glycol and Tween-80 were beneficial to the formation of silver nanoparticles with particle sizes of several nanometers in a narrow size distribution in both weak and strong reducing environments. Cetyltrimethylammonium bromide induced the formation of nanosized silver triangle plates in a weak reducing environment. The crystal growth of the silver nanoparticles with particle sizes of more than 10nm was postulated through an adhesion process of small-sized particles followed by a subsequent coalescence process under the present reaction conditions.A.L. Wang H.B. Yin M. Ren X.N. Cheng Q.F. Zhou X.F. Zhang 2006Acta Metallurgica Sinica(English Letters)2006,19,5:5
2Corrosion fatigue behaviors of two biomedical Mg alloys – AZ91D and WE43 – In simulated body fluid显示文摘X.N. Gu W.R. Zhou Y.F. Zheng Y. Cheng S.C. Wei S.P. Zhong T.F. Xi L.J. Chen 2010Acta Biomaterialia2010,,12:2
3A study on alkaline heat treated Mg–Ca alloy for the control of the biocorrosion rate显示文摘X.N. Gu W. Zheng Y. Cheng Y.F. Zheng 2009Acta Biomaterialia2009,,:1
4Effect of alloying elements and temperature on strength of cryogenic austenitic steels显示文摘Q.X. Dai A.D. Wang X.N. Cheng L. Cheng 2001Materials Science & Engineering A2001,,1:1
5Design of martensite transformation temperature by calculation for austenitic steels显示文摘Q.X. Dai X.N. Cheng Y.T. Zhao X.M. Luo Z.Z. Yuan 2004Materials Characterization2004,,4:1
6Structural parameters of the martensite transformation for austenitic steels显示文摘Q.X. Dai X.N. Cheng X.M. Luo Y.T. Zhao 2003Materials Characterization2003,,4:1
7Effects of laser peening on stress corrosion cracking (SCC) of ANSI 304 austenitic stainless steel显示文摘J.Z. Lu K.Y. Luo D.K. Yang X.N. Cheng J.L. Hu F.Z. Dai H. Qi L. Zhang J.S. Zhong Q.W. Wang Y.K. Zhang 2012Corrosion Science2012,,:1
8Corrosion fatigue behaviors of two biomedical Mg alloys – AZ91D and WE43 – In simulated body fluid显示文摘X.N. Gu W.R. Zhou Y.F. Zheng Y. Cheng S.C. Wei S.P. Zhong T.F. Xi L.J. Chen 2010Acta Biomaterialia2010,,12:1
9Deformation behavior of metastable β-type Ti–25Nb–2Mo–4Sn alloy for biomedical applications显示文摘S. Guo Q.K. Meng X.N. Cheng X.Q. Zhao 2014Journal of the Mechanical Behavior of Biomedical Materials2014,,:1
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