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Individual dispersion of synthetic imogolite nanotubes via droplet evaporation
作者姓名:YANG  HuiXian  SU  ZhaoHuit
作者单位:State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, and Graduate University ofChinese Academy of Sciences, Chinese Academy of Sciences, Changchun 130022, China
基金项目:Supported by the National Natural Science Foundation of China (Grant Nos. 50403008 and 20423003) and the NSFC Fund for Creative Research Groups (Grant No. 50621302)
摘    要:Morphology of synthetic imogolite nanotubes formed in droplet evaporation was investigated by transmission electron microscopy and electron diffraction. The nanotubes form a dense entangled network at higher concentrations,while at lower concentrations the nanotubes are liable to form ori-ented bundles. Under enthanol atmosphere,individual dispersion of nanotubes was observed for the first time,which reveals the length polydispersity of synthetic imogolite nanotubes.

关 键 词:浮石质  纳米管  人工合成  纳米技术  微滴蒸发
收稿时间:5 February 2007
修稿时间:2007-02-05

Individual dispersion of synthetic imogolite nanotubes via droplet evaporation
YANG HuiXian SU ZhaoHuit.Individual dispersion of synthetic imogolite nanotubes via droplet evaporation[J].Chinese Science Bulletin,2007,52(16):2301-2303.
Authors:Yang HuiXian  Su ZhaoHui
Institution:(1) State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, and Graduate University of Chinese Academy of Sciences, Chinese Academy of Sciences, Changchun, 130022, China
Abstract:Morphology of synthetic imogolite nanotubes formed in droplet evaporation was investigated by transmission electron microscopy and electron diffraction. The nanotubes form a dense entangled network at higher concentrations,while at lower concentrations the nanotubes are liable to form ori-ented bundles. Under enthanol atmosphere,individual dispersion of nanotubes was observed for the first time,which reveals the length polydispersity of synthetic imogolite nanotubes.
Keywords:synthetic imogolite  nanotubes  droplet evaporation  individual dispersion
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