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Amino Acids for the Sustainable Production of Cu2O Materials: Effects on Morphology and Photocatalytic Reactivity

机译:用于可持续生产Cu2O材料的氨基酸:对形态学和光催化反应性的影响

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摘要

Photocatalytic technologies represent intriguing approaches for long-term environmental remediation strategies; however, approaches to sustainably generate the catalytic materials remain limited. Many methods require the use of toxic surfactants and potentially harsh conditions. As an alternative, bioinspired approaches present pathways toward the production of functional structures under ambient conditions. In this contribution, the effects of amino acids in the low-temperature production of Cu2O-based materials is examined, providing first principle information for the eventual de novo design of peptides that can control the structure/function relationship of these inorganic materials. These studies demonstrate that only a fraction of the 20 canonical amino acids (Arg, Cys, Glu, His, Lys, and Trp) possess specific control over the morphology and size of Cu2O materials during the synthetic process. This level of control is shown to directly affect the photocatalytic activity of the materials for the degradation of model organic pollutants. Taken together, these results provide intriguing new directions for the rational design of sustainable synthetic approaches for the production of catalytically important semiconductor metal oxide materials applied to long-term environmental remediation capabilities.
机译:光催化技术代表了长期环境修复策略的兴趣方法;然而,可持续地产生催化材料的方法仍然有限。许多方法需要使用有毒表面活性剂和潜在的恶劣条件。作为替代方案,BioinSpired接近在环境条件下朝向生产功能结构的途径。在这一贡献中,检查了氨基酸在基于Cu2O的材料的低温产生中的影响,为最终的肽设计提供了一种可以控制这些无机材料的结构/功能关系的肽的第一原理信息。这些研究表明,只有20个规范氨基酸(Arg,Cys,Glu,His,Lys和TRP)的一部分具有在合成过程中对Cu2O材料的形态和大小进行特异性控制。该对照水平显示出直接影响材料的光催化活性用于模型有机污染物的降解。总之,这些结果为可持续合成方法的合理设计提供了有趣的新方向,用于生产催化重要的半导体金属氧化物材料对长期的环境修复能力。

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