Sreedhar Adem, Hoai Ta Qui Thanh, Noh Jin-Seo
Department of Physics, Gachon University, 1342 Seongnamdaero, Sujeong-gu, Seongnam-si, Gyeonggi-do, 461-701, South Korea.
Department of Physics, Gachon University, 1342 Seongnamdaero, Sujeong-gu, Seongnam-si, Gyeonggi-do, 461-701, South Korea.
Chemosphere. 2022 Oct;305:135478. doi: 10.1016/j.chemosphere.2022.135478. Epub 2022 Jun 24.
Nowadays, we are critically facing various environmental issues. Among these, water contamination is the foremost issue, which worsens our health and living organisms in the water. Thus, it is necessary to provide an avenue to minimize the toxic matter through the development of facile technique and harmless photocatalyst. In this review, we intended to uncover the findings associated with various 0D, 1D, and 2D nanostructures featured photocatalysts for advancements in interfacial characteristics and toxic matter degradation. In this context, we evaluated the promising mixed-dimensional 0D/2D, 1D/2D, and 2D/2D bismuth oxyhalides BiOX (X = Cl, Br, and I) integrated TiO nanostructure interfaces. Tunable mixed-dimensional interfaces highlighted with higher surface area, more heterojunctions, variation in the conduction and valence band potential, narrowed band gap, and built-in electric field formation between BiOX and TiO, which exhibits remarkable toxic dye, heavy metals, and antibiotics degradation. Further, this review further examines insights into the charge carrier generation, separation, and shortened charge transfer path at reduced recombination. Considering the advantages of type-II, S-scheme, and Z-scheme charge transfer mechanisms in the BiOX/TiO, we heightened the combination of various reactive species generation. In a word, the concept of mixed-dimensional BiOX/TiO heterojunction interface endows toxic matter adsorption and decomposition into useful products. Challenges and future perspectives are also provided.
如今,我们正面临着各种严峻的环境问题。其中,水污染是首要问题,它会损害我们的健康以及水中的生物。因此,有必要通过开发简便技术和无害光催化剂,提供一条途径来减少有毒物质。在这篇综述中,我们旨在揭示与各种具有光催化性能的0D、1D和2D纳米结构相关的研究成果,以促进界面特性和有毒物质降解。在此背景下,我们评估了具有前景的混合维度0D/2D、1D/2D和2D/2D卤氧化铋BiOX(X = Cl、Br和I)与TiO集成的纳米结构界面。可调谐的混合维度界面具有更高的表面积、更多的异质结、导带和价带电位的变化、变窄的带隙以及BiOX和TiO之间形成的内建电场,这些特性使其在降解有毒染料、重金属和抗生素方面表现出色。此外,本综述还进一步探讨了电荷载流子的产生、分离以及在减少复合情况下缩短的电荷转移路径。考虑到BiOX/TiO中II型、S型和Z型电荷转移机制的优势,我们强化了各种活性物种生成的组合。总之,混合维度BiOX/TiO异质结界面的概念赋予了有毒物质吸附并分解为有用产物的能力。同时也提出了挑战和未来展望。