首页> 外文OA文献 >Preparation, characterization and photocatalytic performance of titania particles encapsulated in hollow silica shells as an efficient photocatalyst for redox-combined stereoselective synthesis of L-pipecolinic acid from L-lysine
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Preparation, characterization and photocatalytic performance of titania particles encapsulated in hollow silica shells as an efficient photocatalyst for redox-combined stereoselective synthesis of L-pipecolinic acid from L-lysine

机译:空心二氧化硅壳中包裹的二氧化钛颗粒的制备,表征和光催化性能,作为一种有效的光催化剂,用于从L-赖氨酸中氧化还原结合的立体选择性合成L-哌啉酸

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摘要

Hollow core-shell particles of a titania core and a silica shell, the latter of which was highly porous, water-swollen and not directly connected to the former, were synthesized by a multistep process including carbon and silica coatings followed by calcination of the carbon-layer combustion. The core-shell particles suspended in aqueous solutions of L-lysine showed improved stereoselectivity in photocatalytic redox-combined synthesis of L-pipecolinic acid (L-PCA), maintaining L-lysine conversion and PCA selectivity, compared with that by bare titania particles, presumably due to the acidic microenvironment of the titania core to control the position of oxidation by positive holes as the first step of the redox-combined process. Modification of the silica layers to acidify them was also beneficial for improvement of optical purity of the product, PCA.
机译:二氧化钛核和二氧化硅壳的空心核-壳颗粒,是多孔的,水溶胀的,并且与前者没有直接连接,是通过包括碳和二氧化硅涂层的多步法合成的,然后煅烧碳层燃烧。与裸露的二氧化钛粒子相比,悬浮在L-赖氨酸水溶液中的核-壳粒子在光催化氧化还原结合的L-胡椒碱酸(L-PCA)合成中表现出改善的立体选择性,并保持L-赖氨酸转化率和PCA选择性,大概是由于二氧化钛核心的酸性微环境可以控制空穴的氧化位置,这是氧化还原结合工艺的第一步。二氧化硅层的改性以酸化它们也有益于提高产物PCA的光学纯度。

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