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机构地区:[1]福建师范大学化学系
出 处:《电池》1993年第6期251-257,共7页Battery Bimonthly
摘 要:将前篇的EMD—Ti(A)样品进行充放电循环试验以确证其可充性。实验室批量制备出EMD—Ti(A)样品以备实际用途。由XRD、XPS等试验结果,确认由添加剂Ti(A)制备的EMD—Ti(A)样品中,Ti(Ⅳ)与EMD间有化学作用。从实验发现这种EMD-Ti(A)具有P—型半导体的特征,其空穴扩散系数Dh=1.49×10-7cm2·s-1。从实验中测算出这种EMD—Ti(A)与IC.No.1 EMD的质子扩散系数DH+分别为1.2×10(-10)与7.4×10(-11)cm2·S-1。进一步讨论这种EMD—Ti(A)的其他理化性能。The experiments of charge and discharge cycles at constant current of EMD-Ti(A) sample in previous paper were repeatedly made to ascertain the reliability of its reversibility. Sample of EMD-Ti(A) in rather large amount had been prepared in the laboratory for practical purpose. From XRD,XPS and other experimental results it was conformed that this EMD-Ti(A) sample prepared from the additive Ti (A) surely to have Ti(IV) chemical combined with EMD. It was discovered that this EMD-Ti(A) sample behaved as P-type semiconductor. Its diffusion coefficient of hole ,Dh ,was calculated to be 1. 49 脳10-7 cm^2 鈥?s^(-1).From experiments,the diffusion coefficients of proton,>Dh+ >in this EMD-Ti(A) and IC. No. 1 EMD samples had been determined to be 1. 2 X 10-10 and 7. 4 X 10^(-11)cm^2. s^(-1) respectively. Other physicochemical characteristic properties of EMD-Ti(A) sample were observed and discussed.
分 类 号:TM911.14[电气工程—电力电子与电力传动]
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