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Amphiphilic Graphene Quantum Dots: Metal‐Free Photocatalyst for Hydrogen Evolution via Encapsulation of Organic Thermally Activated Delayed Fluorescence Photosensitizers

机译:两亲性石墨烯量子点:通过封装有机热活化延迟荧光光敏剂实现析氢的无金属光催化剂

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Abstract Designing a metal‐free photocatalyst for the photocatalytic hydrogen evolution reaction (HER) is a very important research goal. Although graphene quantum dots (GQDs) have already been demonstrated as HER photocatalysts, it is necessary to address the poor visible light absorption of GQDs to achieve higher efficiency in the hydrogen evolution reaction (HER) rate. We have synthesized amphiphilic GQD by hexylamine (HA) functionalization through an amide bond formation reaction. We confirmed that HA functionalized GQD (GQD‐HA) is amphiphilic and can act as the photocatalyst and templating surfactant at the same time. GQD‐HA can form much more stable composite nanoparticles with thermally activated delayed fluorescence (TADF) photosensitizers than bare GQD. Importantly, the HER performance and the stability of the composite systems are remarkably enhanced after HA functionalization. Through electrochemical analyses, it was verified that composite photosensitizer nanoparticles with GQD‐HA have efficient charge separation and fast charge transfer properties.
机译:抽象设计金属免费光催化剂光催化析氢反应(她)是一个非常重要的研究目标。石墨烯量子点(GQDs)已经证明是她的论文,它是需要解决穷人的可见光吸收GQDs达到更高的效率在氢进化反应(她)率。由己胺合成两亲性GQD吗通过酰胺键(HA)功能化形成反应。功能化GQD (GQD公顷)应承担的两亲性可以作为光催化剂和模板吗表面活性剂在同一时间。更稳定的复合纳米粒子热激活延迟荧光(TADF)比裸GQD敏化。她的性能和稳定的复合系统后明显增强HA功能化。分析,验证了复合光敏剂纳米粒子与GQD量哈有效的电荷分离和快速充电传输属性。

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