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作 者:朱世旺 陈昌兆 ZHU Shi-wang;CHEN Chang-zhao(College of Mechanics and Photoelectric Physics,Anhui University of Science and Technology,Huainan,Anhui 232001,China)
机构地区:[1]安徽理工大学力学与光电物理学院,安徽淮南232001
出 处:《井冈山大学学报(自然科学版)》2018年第5期62-66,共5页Journal of Jinggangshan University (Natural Science)
基 金:国家自然科学基金项目(11404005)
摘 要:以SnCl4.5H2O作为锡源,采用共沉淀法制备SnO_2纳米粒子,以碳球为模板制备了SnO_2中空球。对产物进行了TGA,XRD,TEM,EDX表征,以检测产物的微观结构和形貌为纯SnO_2样品金红石结构。与SnO_2纳米粒子相比,SnO_2中空球结构具有较大的比表面积,因此在表面产生大量的氧空位,造成中空球结构的禁带宽度较小,拉曼光谱中四方金红石的固有模式Eg和A1g发生蓝移现象,SnO_2中空球的PL光谱强度比纳米粒子要强。Using SnCl45H2O as the tin source, SnO2 nanoparticle were prepared by co-precipitation method. SnO2 hollow spheres were prepared using carbon spheres as template. The product was characterized by TGA, XRD, TEM, and EDX. The microstructure and morphology of the product were pure SnO2 sample rutile. Compared with SnO2 nanoparticle, SnO2 hollow sphere structure has a large specific surface area, so the surface produces a large number of oxygen vacancies, resulting in a smaller band gap of the hollow sphere structure, the intrinsic modes Eg and Alg of the tetragonal rutile in the Raman spectrum are blue-shifted. The PL spectrum of SnO2 hollow spheres is stronger than that of nanoparticle.
分 类 号:TB383[一般工业技术—材料科学与工程]
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