Influence of morphology and composition of spherical layered double hydroxide particles and derived mixed oxides on photocatalytic CO2 reduction

IF 7.2 2区 工程技术 Q1 CHEMISTRY, MULTIDISCIPLINARY
Manuel Molina-Muriel , Mahesh Eledath-Changarath , Archit Dhingra , Josep Albero , Juan Francisco Sánchez-Royo , Antonio Ribera , Hermenegildo García
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Abstract

Considering the flexibility in the synthesis that allows the formation of materials with more than two metals, the present study reports the preparation of trimetallic layered double hydroxides (LDHs) having Al as structural tri-positive cation, Ti as photocatalytically active d0 transition metal and either Ni or Co as dipositive cation. In addition, these LDHs were used as precursors of the corresponding trimetallic mixed oxides (MO). LDH and MO materials in combination with Ru(bpy)3Cl2 as photosensitizer and triethanolamine as sacrificial electron donor were used as catalysts for CO2 reduction under solar light irradiation. A different product selectivity, either CH4 for Ni-LDH or CO and H2 for Co-MO, was observed with production rates for CH4 or CO that are among the highest reported for these systems. The role of the inorganic materials in the photocatalytic process was supported by transient absorption spectroscopy that revealed the quenching of the Ru(bpy)3Cl2 triplet excited state by Ni-LDH or Co-MO. An important finding was that the trimetallic Co-Ti-Al oxide with cobaltite structure is able to perform CO2 reduction in spite that the reduction potential of its conduction band is not sufficient to perform the process, evidence by photoluminescence revealing the existence of an upper electronic state responsible for the reduction. These results show the interest in screening multimetallic materials in photocatalysis due to their improved performance and diverse properties.

Abstract Image

球形层状双氢氧化物颗粒及其衍生混合氧化物的形态和组成对光催化还原二氧化碳的影响
考虑到合成的灵活性,可以形成含有两种以上金属的材料,本研究报告了三金属层状双氢氧化物(LDHs)的制备方法,其中 Al 为结构性三阳离子,Ti 为光催化活性 d0 过渡金属,Ni 或 Co 为二阳离子。此外,这些 LDHs 还被用作相应的三金属混合氧化物(MO)的前驱体。LDH 和 MO 材料与作为光敏剂的 Ru(bpy)3Cl2 和作为牺牲电子供体的三乙醇胺相结合,被用作催化剂在太阳光照射下还原 CO2。观察到了不同的产物选择性,Ni-LDH 为 CH4,Co-MO 为 CO 和 H2。无机材料在光催化过程中的作用得到了瞬态吸收光谱的支持,该光谱显示了 Ni-LDH 或 Co-MO 对 Ru(bpy)3Cl2 三重激发态的淬灭。一个重要的发现是,具有钴酸盐结构的三金属 Co-Ti-Al 氧化物能够进行二氧化碳还原,尽管其导带的还原电位不足以完成这一过程,光致发光证明存在一个负责还原的上层电子态。这些结果表明,在光催化过程中筛选多金属材料很有意义,因为它们具有更好的性能和多样化的特性。
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来源期刊
Journal of CO2 Utilization
Journal of CO2 Utilization CHEMISTRY, MULTIDISCIPLINARY-ENGINEERING, CHEMICAL
CiteScore
13.90
自引率
10.40%
发文量
406
审稿时长
2.8 months
期刊介绍: The Journal of CO2 Utilization offers a single, multi-disciplinary, scholarly platform for the exchange of novel research in the field of CO2 re-use for scientists and engineers in chemicals, fuels and materials. The emphasis is on the dissemination of leading-edge research from basic science to the development of new processes, technologies and applications. The Journal of CO2 Utilization publishes original peer-reviewed research papers, reviews, and short communications, including experimental and theoretical work, and analytical models and simulations.
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