Yaguchi Toshie, Kanemura Takashi, Shimizu Takahiro, Imamura Daichi, Watabe Akira, Kamino Takeo
Hitachi High Technologies Corp., Hitachinaka, Ibaraki 312-0057, Japan.
J Electron Microsc (Tokyo). 2012 Aug;61(4):199-206. doi: 10.1093/jmicro/dfs041. Epub 2012 Mar 29.
To clarify the influence of moisture on the structural changes of heated nano materials, in situ high temperature transmission electron microscopy (TEM) has been carried out using a conventional analytical TEM combined with a gas injection-specimen heating holder. Air with high moisture content, above 94% relative humidity (RH), from a humidifier was directly injected onto the heated platinum catalyst dispersed on carbon black (Pt/CB), and the morphological changes of the specimens were observed at high magnification dynamically. The result of the experiment was compared with a result obtained from an experiment using air with a low moisture content, 34% RH. Active movement of the Pt particles, leading agglomeration and grain growth, occurred prior to degradation of the CB support at high moisture content. In contrast, the degradation of the CB support leading agglomeration and grain growth of the Pt particles occurred before the displacement of the Pt particles on the CB supports in a low humidity environment.
为了阐明水分对加热纳米材料结构变化的影响,使用传统分析透射电子显微镜(TEM)结合气体注入-样品加热支架进行了原位高温透射电子显微镜实验。将来自加湿器的相对湿度(RH)高于94%的高水分含量空气直接注入分散在炭黑(Pt/CB)上的加热铂催化剂中,并在高倍率下动态观察样品的形态变化。将该实验结果与使用低水分含量(34%RH)空气的实验结果进行了比较。在高水分含量下,Pt颗粒的活跃移动导致团聚和晶粒生长,这发生在炭黑载体降解之前。相比之下,在低湿度环境中,炭黑载体的降解导致Pt颗粒团聚和晶粒生长,这发生在Pt颗粒在炭黑载体上发生位移之前。