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植物光催化剂:太阳光下植物叶灰的光致氧化和还原能力

Plant Photocatalysts: Photoinduced Oxidation and Reduction Abilities of Plant Leaf Ashes under Solar Light.

作者信息

Ma Xiaoqian, He Jiao, Liu Yu, Bai Xiaoli, Leng Junyang, Zhao Yi, Chen Daomei, Wang Jiaqiang

机构信息

School of Chemical Sciences & Technology, Yunnan University, Kunming 650091, China.

School of Materials and Energy, Yunnan University, Kunming 650091, China.

出版信息

Nanomaterials (Basel). 2023 Aug 6;13(15):2260. doi: 10.3390/nano13152260.

Abstract

Plant leaf ashes were obtained via the high temperature calcination of the leaves of various plants, such as sugarcane, couchgrass, bracteata, garlic sprout, and the yellowish leek. Although the photosynthesis systems in plant leaves cannot exist after calcination, minerals in these ashes were found to exhibit photochemical activities. The samples showed solar light photocatalytic oxidation activities sufficient to degrade methylene blue dye. They were also shown to possess intrinsic dehydrogenase-like activities in reducing the colorless electron acceptor 2,3,5-triphenyltetrazolium chloride to a red formazan precipitate under solar light irradiation. The possible reasons behind these two unreported phenomena were also investigated. These ashes were characterized using a combination of physicochemical techniques. Moreover, our findings exemplify how the soluble and insoluble minerals in plant leaf ashes can be synergistically designed to yield next-generation photocatalysts. It may also lead to advances in artificial photosynthesis and photocatalytic dehydrogenase.

摘要

植物叶灰是通过对甘蔗、茅草、苞叶、蒜苗和韭黄等各种植物的叶子进行高温煅烧而获得的。尽管煅烧后植物叶片中的光合作用系统无法存在,但发现这些灰烬中的矿物质具有光化学活性。样品表现出足以降解亚甲基蓝染料的太阳光光催化氧化活性。在太阳光照射下,它们还表现出将无色电子受体2,3,5-三苯基氯化四氮唑还原为红色甲臜沉淀的内在脱氢酶样活性。还研究了这两种未报道现象背后的可能原因。使用多种物理化学技术对这些灰烬进行了表征。此外,我们的研究结果例证了如何协同设计植物叶灰中的可溶性和不溶性矿物质以产生下一代光催化剂。这也可能会推动人工光合作用和光催化脱氢酶领域的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b1e/10421452/4bf3605d0aec/nanomaterials-13-02260-g001.jpg

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