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Near-Infrared-Driven Photocatalysts: Design, Construction, and Applications

journal contribution
posted on 2024-11-16, 05:20 authored by Li Wang, Xun XuXun Xu, Qunfeng Cheng, Shi DouShi Dou, Yi Du
Photocatalysts, which utilize solar energy to catalyze the oxidation or reduction half reactions, have attracted tremendous interest due to their great potential in addressing increasingly severe global energy and environmental issues. Solar energy utilization plays an important role in determining photocatalytic efficiencies. In the past few decades, many studies have been done to promote photocatalytic efficiencies via extending the absorption of solar energy into near-infrared (NIR) light. This Review comprehensively summarizes the recent progress in NIR-driven photocatalysts, including the strategies to harvest NIR photons and corresponding photocatalytic applications such as the degradation of organic pollutants, water disinfection, water splitting for H2 and O2 evolution, CO2 reduction, etc. The application of NIR-active photocatalysts employed as electrocatalysts is also presented. The subject matter of this Review is designed to present the relationship between material structure and material optical properties as well as the advantage of material modification in photocatalytic reactions. It paves the way for future material design in solar energy–related fields and other energy conversion and storage fields.

Funding

Functional two-dimensional materials for photocatalysis

Australian Research Council

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Multifunctional 2D materials for sustainable energy applications

Australian Research Council

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Two-dimensional plasmonic heterogeneous nanostructures for photocatalysis

Australian Research Council

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History

Citation

Wang, L., Xu, X., Cheng, Q., Dou, S. Xue. & Du, Y. (2019). Near-Infrared-Driven Photocatalysts: Design, Construction, and Applications. Small, Online First 1904107-1-1904107-30.

Journal title

Small

Volume

17

Issue

9

Language

English

RIS ID

139189

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