Department of Chemistry, Indian Institute of Technology, Banaras Hindu University, Varanasi, India.
Photochem Photobiol. 2018 Jul;94(4):641-649. doi: 10.1111/php.12910. Epub 2018 Apr 17.
Curcumin-functionalized Ag/Ag O (c-Ag/Ag O) nanocomposites with varying proportions of curcumin and Ag/Ag O were prepared by a simple one pot green synthesis protocol in aqueous medium. The plasmonic band undergoes slight redshift, broadening and decrease in intensity with increase in the proportion of Ag O formed. These composite nanoparticles were found to be efficient visible-light photocatalysts for aerobic oxidation of methyl orange and rhodamine B (RhB). Functionalization by curcumin significantly enhanced the photocatalytic activity with good reusability. The photocatalytic oxidation rate showed super linear increase with light intensity because of localized surface plasmon resonance (LSPR)-induced strong near field. The trapping experiments confirmed that superoxide radicals were the main active species responsible for the degradation reaction. A plasmonic Z-scheme photocatalytic mechanism is proposed to explain the possible charge transfer and separation behavior of electron-hole pairs among Ag, Ag O and curcumin under visible-light irradiation.
通过在水相介质中使用简单的一锅绿色合成法,制备了不同比例姜黄素和 Ag/Ag2O 的姜黄素功能化 Ag/Ag2O(c-Ag/Ag2O)纳米复合材料。随着 Ag2O 形成比例的增加,等离子体带发生轻微红移、展宽和强度降低。这些复合纳米粒子被发现是用于在有氧条件下氧化甲基橙和罗丹明 B(RhB)的高效可见光光催化剂。姜黄素的功能化显著提高了光催化活性,并且具有良好的可重复使用性。由于局域表面等离子体共振(LSPR)诱导的强近场,光催化氧化速率表现出超线性增加与光强度。捕获实验证实,超氧自由基是导致降解反应的主要活性物质。提出了一种等离子体 Z 型光催化机制,以解释在可见光照射下电子-空穴对在 Ag、Ag2O 和姜黄素之间可能的电荷转移和分离行为。