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Au6S2 Monolayer Sheets: Metallic and Semiconducting Polymorphs
Materials Horizons ( IF 13.3 ) Pub Date : 2017-08-22 00:00:00 , DOI: 10.1039/c7mh00461c
Qisheng Wu 1, 2, 3, 4, 5 , Wen Wu Xu 5, 6, 7, 8, 9 , Bingyan Qu 5, 6, 7, 8, 10 , Liang Ma 5, 6, 7, 8 , Xianghong Niu 1, 2, 3, 4 , Jinlan Wang 1, 2, 3, 4, 11 , Xiao Cheng Zeng 5, 6, 7, 8, 12
Affiliation  

Gold-sulfur interfaces, including self-assembled monolayers of thiol molecules on gold surface, thiolate-protected gold nanoclusters, and gold sulfide complexes have attracted intensive interest for their promising applications in electrochemistry, bioengineering and nanocatalysis. Herein, we predict two hitherto unreported two-dimensional (2D) Au6S2 monolayer polymorphs, named as G-Au6S2 and T-Au6S2. The global-minimum G-Au6S2 monolayer can be viewed as a series of [-S-Au-]n and [-Au4-]n chains parallel packed together. The metastable T-Au6S2 monolayer resembles the widely studied T-MoS2 monolayer structure by substituting each Mo atom with an octahedral Au6 cluster while S atom is bonded with three Au atoms in a μ3 bridging mode. The G-Au6S2 monolayer is predicted to be metallic. The T-Au6S2 monolayer is predicted to be a semiconductor with a direct bandgap of 1.48 eV and high carrier mobility of 2721 cm2V-1S-1, ~10 times higher than that of semiconducting H-MoS2. Moreover, the T-Au6S2 monolayer can absorb sunlight efficiently over almost entire solar spectrum. These properties render the G- and T-Au6S2 monolayers promising materials for advanced applications in microelectronics and optoelectronics.

中文翻译:

Au 6 S 2单层片:金属和半导体多晶型物

金硫界面,包括金表面硫醇分子的自组装单分子层,硫醇盐保护的金纳米团簇和硫化金络合物,因其在电化学,生物工程和纳米催化方面的广阔前景而引起了人们的浓厚兴趣。在本文中,我们预测了两个迄今未报告的二维(2D)Au 6 S 2单层多晶型,分别称为G-Au 6 S 2和T-Au 6 S 2。整体最小的G-Au 6 S 2单层可以看作是一系列平行堆积在一起的[-S-Au-] n和[-Au 4- ] n链。亚稳态T-Au 6小号2单层类似于广泛研究T-的MoS 2通过用与八面体的Au每个原子Mo单层结构6而S原子与在μ3个Au原子键合的簇3桥接模式。预计G-Au 6 S 2单层是金属的。预计T-Au 6 S 2单层是具有1.48 eV的直接带隙和2721 cm 2 V -1 S -1的高载流子迁移率的半导体,比半导体H-MoS 2高约10倍。此外,T-Au 6 S 2单层可以在几乎整个太阳光谱范围内有效吸收阳光。这些特性使得G-和T-Au 6 S 2单层有望成为微电子和光电子领域先进应用的材料。
更新日期:2017-08-22
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