Wang Hui, Zhang Xiaodong, Xie Yi
Hefei National Laboratory for Physical Science at Microscale, iChEM , University of Science and Technology of China , Hefei , Anhui 230026 , P. R. China.
ACS Nano. 2018 Oct 23;12(10):9648-9653. doi: 10.1021/acsnano.8b06723. Epub 2018 Sep 19.
Two-dimensional (2D) black phosphorus (BP) has drawn tremendous attention in solar-light-driven catalytic processes for its intriguing chemical and physical properties. Benefiting from the highly anisotropic electronic structure induced by its puckered crystal geometry, 2D BP tends to have greater confinement with respect to traditional inorganic nanomaterials, thereby leading to robust many-body effects. Such Coulomb-interaction-mediated effects dominate the electronic and optical properties of 2D BP-based nanosystems, where exotic correlations between photoinduced species give rise to unique photoexcitation processes that are closely associated with the involved photocatalytic behavior. In this Perspective, we highlight the critical role of many-body effects in 2D BP-based photocatalysis and exemplify the relationships between the correlated photoinduced species-dominated photoexcitation processes and photocatalytic behavior involved therein. The relevant challenges and opportunities in pursuing efficient 2D BP-based solar energy utilization are also discussed.
二维(2D)黑磷(BP)因其引人入胜的化学和物理性质,在太阳光驱动的催化过程中引起了极大关注。受益于其褶皱晶体几何结构所诱导的高度各向异性电子结构,二维BP相较于传统无机纳米材料往往具有更强的限制作用,从而导致强大的多体效应。这种由库仑相互作用介导的效应主导了基于二维BP的纳米系统的电子和光学性质,其中光致物种之间的奇异相关性引发了独特的光激发过程,这些过程与所涉及的光催化行为密切相关。在这篇综述中,我们强调了多体效应在基于二维BP的光催化中的关键作用,并举例说明了相关光致物种主导的光激发过程与其中所涉及的光催化行为之间的关系。还讨论了在追求高效的基于二维BP的太阳能利用方面的相关挑战和机遇。