Thien Gregory Soon How, Chan Kah-Yoong, Marlinda Ab Rahman, Yap Boon Kar
Centre for Advanced Devices and Systems, Faculty of Engineering, Multimedia University, Persiaran Multimedia, 63100 Cyberjaya, Selangor, Malaysia.
Nanotechnology and Catalysis Research Centre (NANOCAT), Universiti Malaya, 50603, Kuala Lumpur, Malaysia.
Nanoscale. 2023 Dec 7;15(47):19039-19061. doi: 10.1039/d3nr03874b.
Oxide perovskites (OPs) have emerged as promising photocatalysts for numerous applications, such as energy conversion, renewable fuels, and environmental remediation. Although OPs are gaining traction, their efficacies are still hindered by low charge carrier mobility and poor stability. This study investigated the function of polymers actively participating in OP structures to improve the overall characteristics. An overview of the polymer-enhanced perovskite oxide photocatalyst (PEPOP) field was effectively reviewed. These PEPOPs were demonstrated in photovoltaics, pollutant degradation, and gas conversion and reduction. Nonetheless, additional research is needed to explore the potential of PEPOPs to establish their efficacy in photocatalytic applications. The technological improvements of PEPOPs were hindered by significant challenges related to stability and sensitivity. The urgency of this review was apparent due to the fast-paced nature of research in the field of photocatalysis. Recent breakthroughs and emerging applications highlight the need for a comprehensive overview of PEPOPs and their enhanced catalytic capabilities. Consequently, a broad outlook was provided for the current state of PEPOP-related studies, highlighting the potential of these materials for future applications.
钙钛矿氧化物(OPs)已成为众多应用中颇具前景的光催化剂,如能量转换、可再生燃料和环境修复。尽管OPs越来越受到关注,但其效率仍受到低载流子迁移率和稳定性差的阻碍。本研究调查了积极参与OP结构的聚合物的功能,以改善其整体特性。对聚合物增强钙钛矿氧化物光催化剂(PEPOP)领域进行了有效综述。这些PEPOP在光伏、污染物降解以及气体转化与还原方面得到了验证。尽管如此,仍需要进一步研究以探索PEPOP在光催化应用中的潜力,从而确定其功效。PEPOP的技术改进受到与稳定性和敏感性相关的重大挑战的阻碍。由于光催化领域研究的快节奏性质,本次综述的紧迫性显而易见。最近的突破和新兴应用凸显了对PEPOP及其增强催化能力进行全面概述的必要性。因此,对当前PEPOP相关研究的现状进行了广泛展望,突出了这些材料在未来应用中的潜力。