Dhiman Pooja, Sharma Jayati, Kumar Amit, Sharma Gaurav, Dawi Elmuez A, Lai Chin Wei
International Research Centre of Nanotechnology for Himalayan Sustainability (IRCNHS), Shoolini University, Solan, HP, 173229, India; School of Physics and Materials Science, Shoolini University, Solan, HP, 173229, India.
International Research Centre of Nanotechnology for Himalayan Sustainability (IRCNHS), Shoolini University, Solan, HP, 173229, India.
J Environ Manage. 2025 Aug;390:126230. doi: 10.1016/j.jenvman.2025.126230. Epub 2025 Jun 24.
Rapid industrialization has exacerbated environmental pollution and energy crises, necessitating the development of sustainable technologies for environmental remediation and clean energy generation. Among various solar-driven approaches, semiconductor assisted photocatalysis has emerged as a green and efficient method for pollutant degradation and energy production. CuBiO, a p-type semiconductor with a spinel structure and a narrow bandgap (approximately 1.5-1.8 eV), has shown great potential due to its strong visible light absorption, abundance, and low toxicity. However, its photocatalytic performance is hindered by rapid charge carrier recombination and limited oxidation reduction capabilities. This review systematically explores the structural and electronic properties of CuBiO, along with various fabrication methods. Furthermore, recent advancements in performance enhancement strategies including elemental doping and heterojunction engineering are critically analysed, with an emphasis on how these modifications influence carrier dynamics, light harvesting, and surface reactivity. Overall, this review offers a comprehensive perspective on the rational design of CuBiO based photocatalysts for efficient solar energy utilization, aiming to guide future innovations in energy and environmental applications.
快速工业化加剧了环境污染和能源危机,因此需要开发用于环境修复和清洁能源生产的可持续技术。在各种太阳能驱动方法中,半导体辅助光催化已成为一种绿色高效的污染物降解和能源生产方法。CuBiO 是一种具有尖晶石结构和窄带隙(约 1.5 - 1.8 eV)的 p 型半导体,因其强烈的可见光吸收、丰富性和低毒性而显示出巨大潜力。然而,其光催化性能受到快速的电荷载流子复合和有限的氧化还原能力的阻碍。本综述系统地探讨了 CuBiO 的结构和电子性质以及各种制备方法。此外,对包括元素掺杂和异质结工程在内的性能增强策略的最新进展进行了批判性分析,重点是这些修饰如何影响载流子动力学、光捕获和表面反应性。总体而言,本综述为基于 CuBiO 的光催化剂用于高效太阳能利用的合理设计提供了全面的视角,旨在指导能源和环境应用的未来创新。