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Controlled Microstructure and Photochromism of Inorganic-organic Thin Films by Ultrasound
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作者 Yanhua PANG Wei FENG Jie CHEN Yan LIU Weimin CAI 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2007年第4期477-480,共4页
A series of inorganic-organic thin films based on uniformly dispersed nanoparticles of polyoxometalates (POM)entrapped in polyacrylamide (PAM) matrix were prepared by ultrasonic method with different irradiation t... A series of inorganic-organic thin films based on uniformly dispersed nanoparticles of polyoxometalates (POM)entrapped in polyacrylamide (PAM) matrix were prepared by ultrasonic method with different irradiation time.The microstructure, photochromic behavior and mechanism of the films were studied by transmission electron microscopy (TEM), ultraviolet-visible spectra (UV-VIS) and Fourier transform-infrared spectroscopy (FT-IR).The microstructure and photochromic properties of the hybrid thin films could be controlled by ultrasound.TEM image revealed that the average size of phosphotungstic acid (PWA) nanoparticles decreased from 20 to 10 nm with the ultrasound irradiation time from 30 to 60 min. After irradiated with ultraviolet light,the transparent films changed from colorless to blue and showed reversible photochromism. The hybrid film, with ultrasound irradiation for 60 min had higher photochromic efficiency and faster bleaching reaction than the one with ultrasound irradiation for 30 min. FT-IR spectra showed that the Keggin geometry of heteropolyoxometalate was still preserved inside the composites, and the interactions between polyanions and polymer matrix increased as the ultrasound time prolonged. It is suggested that the mechanism of the different photochromic properties for the inorganic-organic thin films is the variation of the microstructure and interfacial interactions induced by ultrasound. 展开更多
关键词 inorganic-organic Thin films sonochemical CONTROLLED microstruture PHOTOCHROMISM
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超声辅助SILAR法生长纳米晶ZnO多孔薄膜及其光学性能研究 被引量:8
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作者 高相东 李效民 于伟东 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2005年第4期965-970,共6页
将超声辐照技术引入连续离子层吸附与反应(SILAR)法,提出超声辅助连续离子层吸附与反应(UA-SILAR)液相成膜技术.以锌氨络离子([Zn(NH3)4]2+)溶液为前驱体,在90℃下沉积得到ZnO薄膜,对其晶体结构,微观形貌、透过光谱和光致发光性能进行表... 将超声辐照技术引入连续离子层吸附与反应(SILAR)法,提出超声辅助连续离子层吸附与反应(UA-SILAR)液相成膜技术.以锌氨络离子([Zn(NH3)4]2+)溶液为前驱体,在90℃下沉积得到ZnO薄膜,对其晶体结构,微观形貌、透过光谱和光致发光性能进行表征, 并考察了超声辐照和沉积循环次数对薄膜形貌、结构和光学特性的影响.结果表明,所得薄膜由彼此交联、尺寸均匀的ZnO晶粒组成,呈现典型的多孔特征,同时具有高结晶性和强c轴取向性.由于多孔结构对入射光的散射作用,薄膜在可见光区具有低透射率(约20%);在紫外光激发下,薄膜具有较强的近带边发射和很弱的蓝带发射,体现出薄膜较高的光学质量;薄膜生长过程中超声辐照的引入可对薄膜的结晶性能和微观结构产生显著的影响. 展开更多
关键词 ZNO 薄膜 连续离子层吸附与反应方法(SILAR) 超声辐照
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