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Stable semiconductor black phosphorus (BP)@titanium dioxide (TiO2) hybrid photocatalysts

机译:稳定的半导体黑磷(BP)@二氧化钛(TiO2)杂化光催化剂

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摘要

Over the past few decades, two-dimensional (2D) and layered materials have emerged as new fields. Due to the zero-band-gap nature of graphene and the low photocatalytic performance of MoS2, more advanced semiconducting 2D materials have been prompted. As a result, semiconductor black phosphorus (BP) is a derived cutting-edge post-graphene contender for nanoelectrical application, because of its direct-band-gap nature. For the first time, we report on robust BP@TiO2 hybrid photocatalysts offering enhanced photocatalytic performance under light irradiation in environmental and biomedical fields, with negligible affected on temperature and pH conditions, as compared with MoS2@TiO2 prepared by the identical synthesis method. Remarkably, in contrast to pure few layered BP, which, due to its intrinsic sensitivity to oxygen and humidity was readily dissolved after just several uses, the BP@TiO2 hybrid photocatalysts showed a ~92% photocatalytic activity after 15 runs. Thus, metal-oxide-stabilized BP photocatalysts can be practically applied as a promising alternative to graphene and MoS2.
机译:在过去的几十年中,二维(2D)和分层材料已经成为新的领域。由于石墨烯的零带隙性质和MoS2的低光催化性能,已经提出了更高级的半导体2D材料。结果,半导体黑磷(BP)由于其直接带隙性质而成为用于纳米电应用的尖端的后石墨烯竞争者。我们首次报道了与通过相同合成方法制备的MoS2 @ TiO2相比,在环境和生物医学领域中在光照射下具有增强的光催化性能,对温度和pH条件的影响可忽略不计的强大BP @ TiO2杂化光催化剂。值得注意的是,与仅几层的BP相比,由于其对氧气和湿气的固有敏感性,仅需几次使用即可溶解,因此BP @ TiO2杂化光催化剂经过15次运行后显示出约92%的光催化活性。因此,可以将金属氧化物稳定的BP光催化剂作为石墨烯和MoS2的有前途的替代品。

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