An Optical Investigation of Silver Nanoclusters Composite Soda-lime Glass Formed by Electric Field Assisted Diffusion
来源期刊:Journal Of Wuhan University Of Technology Materials Science Edition2017年第2期
论文作者:赵君红 林健 ZHANG Wenjun ZHANG Shuo ZHAO Guannan CAI Wen
文章页码:338 - 344
摘 要:Silver nanoclusters(NCs) embedded in soda-lime glass was synthesized by the electric fieldassisted diffusion(EFAD) and successive annealing. The samples were characterized by UV-Vis absorption spectroscopy, photoluminescence spectroscopy, X-ray photoelectron spectroscopy(XPS), and lifetime measurements. The experimental results show that the growth of silver clusters is favored by the annealing temperature and dwell time. The as-diffused and annealed glass samples show photoluminescence around 550 nm under UV excitation, which can be associated with the presence of L-center and Ag3+ cluster. And the increasing of the annealing temperature and dwell time results in an appearance of the SPR peak and the decreasing of the luminescence intensities because the Ag3+ clusters grow up into the Ag nanoparticles.
赵君红1,林健1,2,ZHANG Wenjun1,ZHANG Shuo1,ZHAO Guannan1,CAI Wen3
1. School of Materials Science and Engineering,Tongji University2. Key Laboratory of Advanced Civil Engineering Materials,Ministry of Education3. Center of Super-Diamond and Advanced Films (COSDAF) and Department of physics and Materials Science,City University of Hong Kong
摘 要:Silver nanoclusters(NCs) embedded in soda-lime glass was synthesized by the electric fieldassisted diffusion(EFAD) and successive annealing. The samples were characterized by UV-Vis absorption spectroscopy, photoluminescence spectroscopy, X-ray photoelectron spectroscopy(XPS), and lifetime measurements. The experimental results show that the growth of silver clusters is favored by the annealing temperature and dwell time. The as-diffused and annealed glass samples show photoluminescence around 550 nm under UV excitation, which can be associated with the presence of L-center and Ag3+ cluster. And the increasing of the annealing temperature and dwell time results in an appearance of the SPR peak and the decreasing of the luminescence intensities because the Ag3+ clusters grow up into the Ag nanoparticles.
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