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具有米状纳微阶层结构的仿生超疏水十二硫醇铅表面的简单制备(英文)

Simple Fabrication of Biomimetic Superhydrophobic Lead Dodecanethiolate Surface with Rice-like Hierarchical Micro/Nanostructure
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摘要 A superhydrophobic surface of lead dodecanethiolate with the water contact angle(CA) of 152.2°±1.2° and the sliding angle(SA) of 3.8°±1.0° was fabricated using a simple and relative inexpensive route based on our previous reported method. The procedure employed a one-pot reaction between lead salt and alkanethiolate to form a thermal stable superhydrophobic coating under mild conditions. SEM images revealed the lead dodecanethiolate surface morphology with packed aggregate "rice-like" particles of micrometer scale in length and nanometer scale in thickness. Also,Lead dodecanethiolate powder was investigated by TGA and XRD. A superhydrophobic surface of lead dodecanethiolate with the water contact angle(CA) of 152.2°±1.2° and the sliding angle(SA) of 3.8°±1.0° was fabricated using a simple and relative inexpensive route based on our previous reported method. The procedure employed a one-pot reaction between lead salt and alkanethiolate to form a thermal stable superhydrophobic coating under mild conditions. SEM images revealed the lead dodecanethiolate surface morphology with packed aggregate "rice-like" particles of micrometer scale in length and nanometer scale in thickness. Also,Lead dodecanethiolate powder was investigated by TGA and XRD.
出处 《无机化学学报》 SCIE CAS CSCD 北大核心 2009年第1期184-188,共5页 Chinese Journal of Inorganic Chemistry
基金 supported by NaturalScience Foundations (NSFs) of China (Grant No. 20576053,20606016) NSF (NASA) of China (Grant No. 10676013) 863Important National Science & Technology Specific Project(GrantNo. 2007AA06A402) the NSF of the Jiangsu Higher Edu-cation Commision of China (Grant No. 07KJA53009)~~
关键词 超疏水表面 十二硫醇铅 一步法反应 superhydrophobic surface lead dodecanethiolate one-pot reaction
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  • 1Dejun Miao~(1,2), Xiuhua Sui~3, Linjing Xiao~3 1. Key Laboratory of Mine Hazard Prevention and Control (Ministry of Education, China), Shandong University of Science and Technology, Qingdao 266510, P. R. China 2. School of Architecture, Tsinghua University, Beijing 100084, P. R. China 3. College of Mechanical and Electronic Engineering, Shandong University of Science and Technology, Qingdao 266510, P. R. China.Bionic Design and Finite Element Analysis of Elbow in Ice Transportation Cooling System[J].Journal of Bionic Engineering,2010,7(3):301-306. 被引量:4

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