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首页> 外文期刊>ACS nano >Surface Water Dependent Properties of Sulfur-Rich Molybdenum Sulfides: Electrolyteless Gas Phase Water Splitting
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Surface Water Dependent Properties of Sulfur-Rich Molybdenum Sulfides: Electrolyteless Gas Phase Water Splitting

机译:富含硫钼硫化物的表面水依赖性性能:电解气相水分裂

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摘要

Sulfur-rich molybdenum sulfides are an emerging class of inorganic coordination polymers that are predominantly utilized for their superior catalytic properties. Here we investigate surface water dependent properties of sulfur-rich MoSx (x = 3 2/3) and its interaction with water vapor. We report that MoSx is a highly hygroscopic semiconductor, which can reversibly bind up to 0.9 H2O molecule per Mo. The presence of surface water is found to have a profound influence on the semiconductor's properties, modulating the material's photoluminescence by over 1 order of magnitude, in transition from dry to moist ambient. Furthermore, the conductivity of a MoSx-based moisture sensor is modulated in excess of 2 orders of magnitude for 30% increase in humidity. As the core application, we utilize the discovered properties of MoSx to develop an electrolyteless water splitting photocatalyst that relies entirely on the hygroscopic nature of MoSx as the water source. The catalyst is formulated as an ink that can be coated onto insulating substrates, such as glass, leading to efficient hydrogen and oxygen evolution from water vapor. The concept has the potential to be widely adopted for future solar fuel production.
机译:富含硫的钼硫化物是一种新一类的无机配位聚合物,主要用于其优异的催化性质。在这里,我们研究了富含硫的MOSX的表面水依赖性(X = 3 2/3)及其与水蒸气的相互作用。我们认为MOSX是一种高度吸湿性半导体,可以通过每MO可逆地结合0.9h2O分子。发现表面水的存在对半导体的性质具有深远的影响,将材料的光致发光调节超过1级,从干燥到潮湿的环境。此外,基于MOSX的水分传感器的电导率被调节超过2个级别,湿度增加30%。作为核心应用,我们利用MOSX的发现性能来开发一种电解水分解光催化剂,其完全依赖于MOSX作为水源的吸湿性。将催化剂配制为油墨,其可以涂覆到绝缘基材(例如玻璃)上,导致水蒸气的有效氢和氧进化。该概念有可能被广泛采用未来的太阳能燃料生产。

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