Black Phosphorus/Platinum Heterostructure : A Highly Efficient Photocatalyst for Solar-Driven Chemical Reactions
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review
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Detail(s)
Original language | English |
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Article number | 1803641 |
Journal / Publication | Advanced Materials |
Volume | 30 |
Issue number | 40 |
Online published | 2 Sept 2018 |
Publication status | Published - 4 Oct 2018 |
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Abstract
A 2D black phosphorus/platinum heterostructure (Pt/BP) is developed as a highly efficient photocatalyst for solar-driven chemical reactions. The heterostructure, synthesized by depositing BP nanosheets with ultrasmall (≈1.1 nm) Pt nanoparticles, shows strong Pt–P interactions and excellent stability. The Pt/BP heterostructure exhibits obvious P-type semiconducting characteristics and efficient absorption of solar energy extending into the infrared region. Furthermore, during light illumination, accelerated charge separation is observed from Pt/BP as manifested by the ultrafast electron migration (0.11 ps) detected by a femtosecond pump-probe microscopic optical system as well as efficient electron accumulation on Pt revealed by in situ X-ray photoelectron spectroscopy. These unique properties result in remarkable performance of Pt/BP in typical hydrogenation and oxidation reactions under simulated solar light illumination, and its efficiency is much higher than that of other common Pt catalysts and even much superior to that of conventional thermal catalysis. The 2D Pt/BP heterostructure has enormous potential in photochemical reactions involving solar light and the results of this study provide insights into the design of next-generation high-efficiency photocatalysts.
Research Area(s)
- 2D materials, black phosphorus, heterostructures, photocatalysis, ultrasmall platinum nanoparticles
Citation Format(s)
Black Phosphorus/Platinum Heterostructure: A Highly Efficient Photocatalyst for Solar-Driven Chemical Reactions. / Bai, Licheng; Wang, Xin; Tang, Shaobin et al.
In: Advanced Materials, Vol. 30, No. 40, 1803641, 04.10.2018.
In: Advanced Materials, Vol. 30, No. 40, 1803641, 04.10.2018.
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review