破解火山状自由基稳定性与网状电化学发光之间的关系

IF 15.7 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Haocheng Xu, Rengan Luo, Haifeng Lv, Tianrui Liu, Qiaobo Liao, Yandong Wang, Ziyan Zhong, Xiaojun Wu, Jianping Lei, Kai Xi
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引用次数: 0

摘要

电化学发光(ECL)是一种发光过程,其中电化学生成自由基的稳定性对激发态产生的效率和持久性有着至关重要的影响。因此,破译自由基稳定性和ECL性能之间的关系是非常有吸引力的。在这项工作中,设计了三种sp2碳共轭共价有机框架(COF)网状纳米发射器,它们由相同的芘发光基团和不同的丙烯腈连接剂组成,具有渐进的电子亲和,命名为CN-COF-1, 2和3。通过精确调节CN-COFs的电子亲和力,发现ECL与自由基稳定性之间存在火山关系,ECL强度增强了78倍。密度泛函理论计算表明,CN-COF-2具有适度的自由基稳定能力和有效的电子在芘核之间的传递,有利于ECL的产生。值得注意的是,适当的CN-COF-2自由基稳定性不仅可以实现自增强阴极ECL,而且可以提高ECL强度的耐久性。自由基稳定性的合理调控为开发高效的网状纳米发射器和解码ECL基本原理铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Deciphering a volcano-shaped relationship between radical stability and reticular electrochemiluminescence

Deciphering a volcano-shaped relationship between radical stability and reticular electrochemiluminescence

Electrochemiluminescence (ECL) is a light-emitting process in which the stability of electrochemically generated radicals has a crucial impact on the efficiency and durability of excited state generation. Therefore, deciphering a relationship between radical stability and ECL performance is highly appealing. In this work, three sp2 carbon-conjugated covalent organic framework (COF) reticular nanoemitters compositing of same pyrene luminophores but different acrylonitrile linkers are designed with progressive electron affinities, named as CN-COF-1, 2, and 3. By precisely modulating the electron affinity of CN-COFs, a volcano relationship between ECL and radical stability is discovered with 78 folds enhancement in ECL intensity. Density functional theoretical calculations indicate that CN-COF-2 exhibits moderate radical stabilization capacity as well as efficient electron transport between the pyrene cores, facilitating ECL generation. Significantly, the appropriate radical stability of CN-COF-2 not only achieves the self-enhanced cathodic ECL but also promotes durability of the ECL intensity. The rational regulation of radical stability paves the way for developing efficient reticular nanoemitters and decoding the ECL fundamentals.

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来源期刊
Nature Communications
Nature Communications Biological Science Disciplines-
CiteScore
24.90
自引率
2.40%
发文量
6928
审稿时长
3.7 months
期刊介绍: Nature Communications, an open-access journal, publishes high-quality research spanning all areas of the natural sciences. Papers featured in the journal showcase significant advances relevant to specialists in each respective field. With a 2-year impact factor of 16.6 (2022) and a median time of 8 days from submission to the first editorial decision, Nature Communications is committed to rapid dissemination of research findings. As a multidisciplinary journal, it welcomes contributions from biological, health, physical, chemical, Earth, social, mathematical, applied, and engineering sciences, aiming to highlight important breakthroughs within each domain.
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