封底图片:碳中和,第二卷,第6期,2023年11月

Xin-Long Li, Yue-Bo Wang, Ying Wang, Rong-Zhen Zhang, Rui-Zhi Dong, Hui Liu, ShengSheng Yu, Ning Han, Ling-Bao Xing
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引用次数: 0

摘要

封底图:近年来,基于非共价策略的光催化剂的发展在医疗和有机材料中显示出重要的作用。设计和合成有效的有机光敏剂或光催化剂,使底物(氧、水等)在光照下转化为活性氧(ROS),从而实现高效的光催化反应是非常重要的。文章10.1002/cnl2.98设计并合成了苯并噻唑衍生物(MPBT),通过主客体相互作用可与CB形成超分子二聚体[8]。MPBT的二聚化可以产生更多的超氧阴离子自由基,可用于参与芳硼酸的氧化羟基化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Back Cover Image: Carbon Neutralization, Volume 2, Issue 6, November 2023

Back cover image: Recently, the development of photocatalysts based on non-covalent strategies have shown an important role in medical and organic materials. It is very important to design and synthesize effective organic photosensitizers or photocatalysts that can convert substrates (oxygen, water, etc.) into reactive oxygen species (ROS) under light to achieve efficient photocatalytic reactions. In article number 10.1002/cnl2.98, benzothiazole derivatives (MPBT) were designed and synthesized, which can form supramolecular dimers with CB[8] through host-guest interaction. The dimerization of MPBT can produce more superoxide anion radicals, which can be used to participate in the oxidative hydroxylation of arylboric acid.

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Issue Information Front Cover: Carbon Neutralization, Volume 3, Issue 6, November 2024 Inside Back Cover Image: Carbon Neutralization, Volume 3, Issue 6, November 2024 Back Cover Image: Carbon Neutralization, Volume 3, Issue 6, November 2024 A chronicle of titanium niobium oxide materials for high-performance lithium-ion batteries: From laboratory to industry
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