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Improving the Photostability of Ru(bpy)32+ by Embedment in Silica

机译:在二氧化硅中包埋提高Ru(bpy)32+的光稳定性

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Abstract As a classical photosensitizer model, [Ru(bpy)3]2+ possesses excellent photochemical properties and plays a critical role in photocatalysis. Improving the photostability of [Ru(bpy)3]2+ is still a challenge, as its ligands are easily lost upon light irradiation. It is thus of importance to understand the mechanisms of photo‐instability and to explore counter measures. Herein, we demonstrate that loading [Ru(bpy)3]2+ in silica could greatly suppress its photodissociation of ligands, thus improving its photocatalytic activity. By integrating nano‐stirbars with [Ru(bpy)3]2+‐silica nanocomposites, the heterogeneous catalysis showed improved activity and recyclability. We believe that the preservation of the ligand sphere in embedded complexes would facilitate regioselectivity and enantioselectivity in conventional heterogeneous catalysis.
机译:摘要经典光敏剂模型,[俄文(bpy) 3] 2 +具有优异的光化学属性和发挥了至关重要的作用光催化作用。[俄文(bpy) 3] 2 +仍然是一个挑战,作为配体很容易迷失在光辐照。因此重要性的理解机制照片的不稳定和探索措施。[俄文(bpy) 3) 2 +硅可以大大抑制它光离解的配体,从而提高光催化活性。纳米复合材料,多相催化表明改进的活动和再循环能力。相信配体的保护球体在嵌入式复合物会方便区域选择性和选择性传统的多相催化。

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