Department of Materials Science and Engineering, College of Engineering, Peking University , Beijing 100871, People's Republic of China.
ACS Nano. 2014 Oct 28;8(10):10196-204. doi: 10.1021/nn503211t. Epub 2014 Sep 15.
Controllable synthesis of monolayer MoS2 is essential for fulfilling the application potentials of MoS2 in optoelectronics and valleytronics, etc. Herein, we report the scalable growth of high quality, domain size tunable (edge length from ∼ 200 nm to 50 μm), strictly monolayer MoS2 flakes or even complete films on commercially available Au foils, via low pressure chemical vapor deposition method. The as-grown MoS2 samples can be transferred onto arbitrary substrates like SiO2/Si and quartz with a perfect preservation of the crystal quality, thus probably facilitating its versatile applications. Of particular interest, the nanosized triangular MoS2 flakes on Au foils are proven to be excellent electrocatalysts for hydrogen evolution reaction, featured by a rather low Tafel slope (61 mV/decade) and a relative high exchange current density (38.1 μA/cm(2)). The excellent electron coupling between MoS2 and Au foils is considered to account for the extraordinary hydrogen evolution reaction activity. Our work reports the synthesis of monolayer MoS2 when introducing metal foils as substrates, and presents sound proof that monolayer MoS2 assembled on a well selected electrode can manifest a hydrogen evolution reaction property comparable with that of nanoparticles or few-layer MoS2 electrocatalysts.
可控合成单层 MoS2 对于实现 MoS2 在光电学和谷电子学等领域的应用潜力至关重要。在此,我们通过低压化学气相沉积法,在商业 Au 箔上报告了高质量、尺寸可调(边长从 ∼ 200nm 到 50μm)、严格单层 MoS2 薄片甚至完整薄膜的可扩展生长。所生长的 MoS2 样品可以转移到 SiO2/Si 和石英等任意衬底上,晶体质量完美保留,从而可能促进其多功能应用。特别有趣的是,Au 箔上纳米尺寸的三角形 MoS2 薄片被证明是析氢反应的优异电催化剂,具有相当低的塔菲尔斜率(61mV/decade)和相对较高的交换电流密度(38.1μA/cm2)。MoS2 和 Au 箔之间的优异电子耦合被认为是其非凡的析氢反应活性的原因。我们的工作报告了在引入金属箔作为衬底时合成单层 MoS2,并提供了充分的证据,证明在精心选择的电极上组装的单层 MoS2 可以表现出与纳米颗粒或少层 MoS2 电催化剂相当的析氢反应性能。