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3篇 您的检索式:作者名="J.Tong"
    题名 作者 年代 出处 被引量
1Unique microstructure and thermal insulation property of a novel waste-utilized foam ceramic显示文摘A characteristic CaO-Al2O3-SiO2 based foam ceramic was prepared by melt-foaming with solid wastes as main raw materials.The similarity to sandwich hole wall microstructure of this novel thermal insulating material was presented and the relationships between this unique microstructure and porosity,density,thermal conductivity and strength were discussed.Comparing the measured and theoretical values with that of the traditional foam ceramic,it can be found that,for the matching of fine skeleton with hole wall,this original sandwich structure can reduce thermal conductivity and increase flexural strength effectively.F.H.Kuang S.M.Wang C.Gao H.B.Zhang R.K.Ren J.L.Ren J.Tong Y.M.Liu 2020Journal of Materials Science & Technology2020,47,13:5
2Basal core promoter T1762/A1764 and precore A1896 gene mutations in hepatitis B surface antigen‐positive hepatocellular carcinoma: a comparison with chronic carriers显示文摘Myron J.Tong Lawrence M.Blatt Jia‐HorngKao Jason TzuyingCheng William G.Corey 2007Liver International2007,,10:2
3多晶铂电极表面硫吸附物种的原位表面增强拉曼光谱研究(英文)显示文摘本工作首次报道了在酸性或碱性电解质中高粗糙度多晶铂电极表面硫物种的吸附、电氧化过程的原位表面增强拉曼光谱研究.分别在两种情况下采集了粗糙铂电极的表面增强拉曼光谱:(a)循环伏安处理后控制一定电位(0.2V)下;(b)逐步控制不同电位.酸性电解质条件下,两种情况均观察到位于300cm-1的Pt—S振动.Pt—S键较强,阻止了氢在铂电极表面的吸附,需多次循环伏安处理才能完全将表面吸附的硫去除.同时还观察到位于470cm-1处的少量多聚S物种(S8或者其他类型).这些多聚S物种仅仅微弱地键合在铂电极的表面,可以容易地除去.在碱性电解质中,同样也在(a)和(b)情况下观察到位于310cm-1的Pt—S振动吸收.本工作了获得了有关硫在粗糙多晶铂电极表面吸附和电氧化重要信息,证明了原位表面增强拉曼光谱在研究铂表面的适用性.In-Su Park YuYe J.Tong 2010电化学2010,16,3:0
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