L.V. Pysarzhevsky Institute of Physical Chemistry, National Academy of Sciences of Ukraine, 03028 Kyiv, Ukraine.
Chem Soc Rev. 2018 Jul 17;47(14):5354-5422. doi: 10.1039/c8cs00029h.
The paper reviews the state of the art in the synthesis of multinary (ternary, quaternary and more complex) metal chalcogenide nanocrystals (NCs) and their applications as a light absorbing or an auxiliary component of light-harvesting systems. This includes solid-state and liquid-junction solar cells and photocatalytic/photoelectrochemical systems designed for the conversion of solar light into the electric current or the accumulation of solar energy in the form of products of various chemical reactions. The review discusses general aspects of the light absorption and photophysical properties of multinary metal chalcogenide NCs, the modern state of the synthetic strategies applied to produce the multinary metal chalcogenide NCs and related nanoheterostructures, and recent achievements in the metal chalcogenide NC-based solar cells and the photocatalytic/photoelectrochemical systems. The review is concluded by an outlook with a critical discussion of the most promising ways and challenging aspects of further progress in the metal chalcogenide NC-based solar photovoltaics and photochemistry.
本文综述了多元(三元、四元及更复杂)金属硫属化物纳米晶体(NCs)的合成及其作为吸光或辅助光收集系统组件的应用的最新进展。这包括用于将太阳光转化为电流或通过各种化学反应产物的形式积累太阳能的固态和液态结太阳能电池以及光催化/光电化学系统。本文综述了多元金属硫属化物 NCs 的光吸收和光物理性质的一般方面、应用于合成多元金属硫属化物 NCs 及相关纳米异质结构的现代策略的现状,以及基于金属硫属化物 NC 的太阳能电池和光催化/光电化学系统的最新进展。最后,本文通过批判性讨论基于金属硫属化物 NC 的太阳能光伏和光化学进一步发展的最有前途的途径和具有挑战性的方面进行了展望。