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使用烷基胺制备富氮 1T'-MoS 层状纳米结构,用于高效析氢催化。

Nitrogen-rich 1T'-MoS layered nanostructures using alkyl amines for high catalytic performance toward hydrogen evolution.

机构信息

Department of Chemistry, Korea University, Sejong 339-700, Republic of Korea.

出版信息

Nanoscale. 2018 Aug 2;10(30):14726-14735. doi: 10.1039/c8nr03661f.

Abstract

The imminent global energy crisis and current environmental issues have stimulated considerable research on high-performance catalysts for sustainable hydrogen energy generation. Two-dimensional layered MoS2 has recently drawn worldwide attention because of its excellent catalytic properties for the hydrogen evolution reaction (HER). In the present work, we prepared nitrogen (N)-rich 1T' (distorted 1T) phase MoS2 layered nanostructures using different alkyl amines with 1-4 nitrogen atoms (methylamine, ethylenediamine, diethylenetriamine, and triethylenetetramine) as intercalants. The amine molecules intercalate at 10 atomic%, and simultaneously supply the N atoms that substitute the S atoms to produce the N-doped MoS2, whose composition is MoS2(1-x)Nx, where x = 0.1-0.26. MoS2 prepared with amines having more N atoms has enhanced catalytic HER performance: a Tafel slope of 36 mV dec-1 and 10 mA cm-2 at -160 mV (vs. RHE). First-principles calculations showed that the amine intercalation and N doping increase the density of states near the Fermi level in a narrow range and bring about an effective overlap of the dz2(Mo), pz(S), and pz(N) states. These factors in turn increase the carrier (electron) concentration and mobility for improved HER. The calculation also predicted that the most active site is S vacancies. The present work illustrates how the HER catalytic performance of 1T' phase MoS2 can be effectively controlled by the amine molecules.

摘要

迫在眉睫的全球能源危机和当前的环境问题激发了人们对用于可持续氢能产生的高性能催化剂的大量研究。二维层状 MoS2 由于其对析氢反应 (HER) 的优异催化性能而引起了全世界的关注。在本工作中,我们使用不同含氮原子数为 1-4 的烷基胺(甲胺、乙二胺、二乙烯三胺和三乙烯四胺)作为插层剂制备了富氮 1T'(扭曲 1T)相 MoS2 层状纳米结构。胺分子插层到 10 个原子%,同时提供取代 S 原子的 N 原子,生成 N 掺杂 MoS2,其组成是 MoS2(1-x)Nx,其中 x = 0.1-0.26。用含更多 N 原子的胺制备的 MoS2 具有增强的 HER 催化性能:在 -160 mV(相对于 RHE)时 Tafel 斜率为 36 mV dec-1 和 10 mA cm-2。第一性原理计算表明,胺插层和 N 掺杂在很窄的范围内增加了费米能级附近的态密度,并导致 dz2(Mo)、pz(S) 和 pz(N) 态的有效重叠。这些因素反过来又提高了载流子(电子)浓度和迁移率,从而改善了 HER。计算还预测最活跃的位点是 S 空位。本工作说明了如何通过胺分子有效控制 1T' 相 MoS2 的 HER 催化性能。

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