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解析分散在不同溶剂中的氮化硼纳米片的光致发光特性及其在产生白光方面的应用。

Unraveling the Photoluminescence Properties of a Boron Nitride Nanosheet Dispersed in Different Solvents and Its Application to Generate White Light.

作者信息

Bhattacharjee Sanyukta, Seth Debabrata

机构信息

Department of Chemistry, Indian Institute of Technology Patna, Patna 801103, Bihar, India.

出版信息

Langmuir. 2024 Jan 9;40(1):772-787. doi: 10.1021/acs.langmuir.3c02968. Epub 2023 Dec 28.

Abstract

Hexagonal boron nitride (h-BN) is an influential 2D nanomaterial; however, its practical optoelectronic applications rely primarily on controlling the structural defects. The photoluminescence depends explicitly on the developed vacancies and substitutional defects. The present work utilizes the concept of facile liquid-phase exfoliation of hexagonal (h) boron nitride (BN) powder in common organic solvents and cosolvent mixtures to obtain a layered boron nitride nanosheet (BNNS). Although the literature concerning the layered structure of BNNS obtained by different methods is substantial, what is lacking is a detailed photoluminescence study of the layered structure obtained by changing the solvent and cosolvent mixtures, and here lies the novelty of our work. The obtained layered structure was subjected to a detailed photoluminescence study by varying the temperature. We tried to correlate how the defects originating upon changing the solvent and cosolvent affected the photoluminescence of the layered BNNS. The obtained layered structure is suitably supported by optical and electron microscopy images. High-resolution transmission electron microscopy confirm the presence of a few layers, and X-ray photoelectron spectroscopy studies give an idea of the atomic composition of the obtained BNNS. The photoluminescence properties of the obtained BNNS in water were modulated by the addition of two different classes of block copolymers, e.g., Pluronic (F-68, P-407, and P-123) and Tetronic (T-904, T-908, and T-90R4) copolymers. As an application, we were successful in constructing a nanocomposite material made up of a BNNS-copolymer-organic fluorophore to check the possibilities of generating white light.

摘要

六方氮化硼(h-BN)是一种有影响力的二维纳米材料;然而,其实际的光电应用主要依赖于控制结构缺陷。光致发光明确取决于所形成的空位和替代缺陷。本工作利用在常见有机溶剂和共溶剂混合物中对六方(h)氮化硼(BN)粉末进行简便液相剥离的概念,以获得层状氮化硼纳米片(BNNS)。尽管关于通过不同方法获得的BNNS层状结构的文献很多,但缺乏对通过改变溶剂和共溶剂混合物获得的层状结构进行详细的光致发光研究,而这正是我们工作的新颖之处。通过改变温度对获得的层状结构进行了详细的光致发光研究。我们试图关联改变溶剂和共溶剂时产生的缺陷如何影响层状BNNS的光致发光。所获得的层状结构得到了光学和电子显微镜图像的适当支持。高分辨率透射电子显微镜证实了存在几层,而X射线光电子能谱研究给出了所获得的BNNS原子组成的概念。通过添加两类不同的嵌段共聚物,例如普朗尼克(F-68、P-407和P-123)和泰特罗尼克(T-904、T-908和T-90R4)共聚物,调节了所获得的BNNS在水中的光致发光性质。作为一种应用,我们成功构建了由BNNS-共聚物-有机荧光团组成的纳米复合材料,以检验产生白光的可能性。

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