简介概要

MEVVA磁过滤等离子技术制备的Fe纳米颗粒薄膜结构

图书来源:二元合金相图及中间相晶体结构 二元合金相图及中间相晶体结构

作 者:唐仁政 田荣璋

出版时间:2009-05

定 价:320元

图书ISBN:978-7-81105-831-4

出版单位:中南大学出版社

详情信息展示

First-principle study on the surface atomic relaxation properties of sphalerite

Jian Liu 1) , Shu-ming Wen 1) , Yong-jun Xian 1) , Shao-jun Bai 1) , and Xiu-min Chen 2) 1) Faculty of Land Resource Engineering, Kunming University of Science and Technology, Kunming 650093, China 2) National Engineering Laboratory of Vacuum Metallurgy, Kunming University of Science and Technology, Kunming 650093, China

摘 要:The surface properties of sphalerite (ZnS) were theoretically investigated using first principle calculations based on the density functional theory (DFT). DFT results indicate that both the (110) and the (220) surfaces of sphalerite undergo surface atom relaxation after geometry optimization, which results in a considerable distortion of the surface region. In the normal direction, i.e., perpendicular to the surface, S atoms in the first surface layer move outward from the bulk (d1 ), whereas Zn atoms move toward the bulk (d2 ), forming an S-enriched surface. The values of these displacements are 0.003 nm for d 1 and 0.021 nm for d2 on the (110) surface, and 0.002 nm for d 1 and 0.011 nm for d 2 on the (220) surface. Such a relaxation process is visually interpreted through the qualitative analysis of molecular mechanics. X-ray photoelectron spectroscopic (XPS) analysis provides the evidence for the S-enriched surface. A polysulphide (S2-n ) surface layer with a binding energy of 163.21 eV is formed on the surface of sphalerite after its grinding under ambient atmosphere. This S-enriched surface and the S 2 n surface layer have important influence on the flotation properties of sphalerite.

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