Rich photoluminescence emission of SnO2–SiO2 composite aerogels prepared with a co-fed precursor sol–gel process

Te-Yu Wei , Shih-Yuan Lu , Yu-Cheng Chang
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引用次数: 13

Abstract

Tin oxide–silica composite aerogels were successfully prepared with a co-fed precursor sol–gel process. The crystallinity of the tin oxide nanoparticles, embedded in the mesoporous SiO2 network, was improved with increasing the post-reaction thermal treatment temperature. The composite aerogels exhibited a rich photoluminescence (PL) emission contributed by both SnO2 and SiO2. The PL peak of 346 nm was from the near band edge emission of the tin oxide nanoparticles, and the ones located at 310 and 476 nm were attributable to the oxygen deficiencies of the silica network. Three more emission peaks, 387, 432, and 522 nm, were observed, with the 387 nm peak contributed by the oxygen vacancies VO++, the 432 nm peak by the Sn interstitials, and the 522 nm peak by the oxygen vacancies VO+, respectively, of the tin oxide nanoparticles. The intensities of these three defect level emissions were found decreased, as compared to that of the near band edge emission, with increasing the post-reaction thermal treatment temperature as the tin oxide crystallinity improved.

溶胶-凝胶法制备SnO2-SiO2复合气凝胶的富光致发光特性
采用溶胶-凝胶法制备了氧化锡-二氧化硅复合气凝胶。随着反应后热处理温度的升高,嵌入中孔SiO2网络的氧化锡纳米颗粒的结晶度有所提高。复合气凝胶表现出丰富的光致发光(PL),这是SnO2和SiO2共同贡献的结果。346 nm处的PL峰来自于氧化锡纳米粒子的近带边发射,310和476 nm处的PL峰是由于二氧化硅网络缺氧引起的。在387 nm、432 nm和522 nm处观察到氧化锡纳米粒子的发射峰,其中387 nm峰是由氧空位VO++贡献的,432 nm峰是由Sn空隙贡献的,522 nm峰是由氧空位VO+贡献的。随着反应后热处理温度的升高和氧化锡结晶度的提高,这三种缺陷能级的发射强度与近带边发射强度相比有所降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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