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N、P 共掺杂碳纳米洋葱的多相发射特性研究:可见光吸收在光催化中的应用。

Insight into the Multistate Emissive N, P-doped Carbon Nano-Onions: Emerging Visible-Light Absorption for Photocatalysis.

机构信息

Department of Chemical Sciences, Indian Institute of Science Education and Research, Transit Campus (Govt. ITI Building), Engg. School Road, Berhampur, Odisha, 760010, India.

Centre for Nano and Soft Matter Sciences, Prof. U. R. Road, Jalahalli, Bangalore, 560010, India.

出版信息

Chem Asian J. 2021 May 3;16(9):1138-1149. doi: 10.1002/asia.202100137. Epub 2021 Mar 26.

Abstract

Carbon dots (CDs) have become one of the most emerging materials as an alternative solar light-induced photocatalyst in contrast to traditional metal-based systems. However, one of the major challenges is the lack of visible light absorption. Herein, we have fabricated unique N, P-co-doped CDs with a self-assembled onion-like layered structure by using a bottom-up facile synthesis technique from chitosan gel and phosphoric acid as molecular precursors. This typical layered structure of N, P-co-doped carbon nano onions (N, P-CNOs), with an average size of 25-50 nm, displays an enhanced visible light absorption. Detailed structural and elemental characterizations confirm the extensive aromatic domain with P-containing surface functionalities, while electrochemical study clarifies the lowering of band gaps as well as the creation of new electronic states in comparison to the pristine N-CDs. Furthermore, the intrinsic structural features are correlated with the underpinning photophysical processes by steady-state and time-resolved fluorescence spectroscopy. In addition, steady-state polarized emission and thermo-responsive PL properties have been carried out to unveil further the structure-property correlation of N, P-CNOs, and their comparative study with pristine N-CDs at the different excitation wavelengths. Finally, N, P-CNOs exhibit efficient visible-light-induced photocatalysis, and the detailed mechanistic study is carried out by trapping the photogenerated species in an aqueous medium. The prepared N, P-CNOs displayed an excellent visible-light photocatalytic performance over MB dye with a degradation efficiency of 75.8% within 120 min along with a degradation rate constant of ∼0.0109 min . It is concluded that the easy to synthesize and low-cost N, P-CNOs with a unique morphology hold great potential for application in visible-light photocatalysis.

摘要

碳点 (CDs) 已成为最具新兴的材料之一,可作为替代传统基于金属的系统的太阳能光致光催化剂。然而,主要挑战之一是缺乏可见光吸收。在此,我们通过使用壳聚糖凝胶和磷酸作为分子前体的自下而上的简便合成技术,制造了具有独特的 N、P 共掺杂洋葱状层状结构的 CDs。这种典型的 N、P 共掺杂碳纳米洋葱 (N、P-CNO) 的层状结构,平均尺寸为 25-50nm,显示出增强的可见光吸收。详细的结构和元素特性证实了广泛的含 P 表面官能团的芳香域,而电化学研究则阐明了与原始 N-CDs 相比,带隙降低以及新电子态的产生。此外,通过稳态和时间分辨荧光光谱研究了本征结构特征与基础光物理过程之间的关系。此外,进行了稳态偏振发射和热敏 PL 特性研究,以进一步揭示 N、P-CNO 的结构-性能关系,并在不同的激发波长下对其与原始 N-CDs 的比较研究。最后,N、P-CNOs 表现出高效的可见光诱导光催化性能,并通过在水介质中捕获光生物质进行了详细的机理研究。所制备的 N、P-CNOs 在 MB 染料上显示出出色的可见光光催化性能,在 120min 内降解效率为 75.8%,降解速率常数约为 0.0109min-1。可以得出结论,具有独特形态的易于合成且低成本的 N、P-CNOs 在可见光光催化应用中具有巨大的潜力。

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