Abraham Joselyn Elizabeth, Kumbhakar Partha, Balachandran Manoj
Department of Physics and Electronics, CHRIST (Deemed to be University), Bengaluru, 560029, Karnataka, India.
J Fluoresc. 2025 Apr;35(4):2049-2058. doi: 10.1007/s10895-024-03652-6. Epub 2024 Mar 13.
Optimizing the optoelectronic characteristics of low-dimensional carbon dots (CDs) through surface modifications and doping has proven instrumental in tailoring them for diverse applications. This study explores a facile and economical hydrothermal synthesis method for generating Carbonized Polymer Dots using o-phenylenediamine at different temperatures. The resulting materials exhibit structural and morphological variations linked to the synthesis temperature. A transition from carbon dots (CDs) embedded in reduced graphene oxide (rGO)-like sheet structures at low temperatures to the core-shell structure at the highest temperature is observed in HR-TEM, implying the formation of CPDs. X-ray photoelectron spectroscopy (XPS) corroborates these findings, showing an augmented degree of graphitization in alignment with HR-TEM results. The photoluminescence spectra of CPDs synthesized at the lowest temperature exhibit multiple emission peaks, resulting in a yellowish-orange color. Utilizing these CPDs to fabricate light-emitting diodes (LEDs) produces a vivid bright-green emission with CIE coordinates (0.378, 0.522). Moreover, the CPDs demonstrate solvatochromism across diverse solvents of varying polarity, covering the entire visible spectrum. This intriguing solvatochromic effect positions the CPDs as promising materials for polarity probing applications.
通过表面改性和掺杂来优化低维碳点(CDs)的光电特性,已被证明有助于将其定制用于各种应用。本研究探索了一种简便且经济的水热合成方法,用于在不同温度下使用邻苯二胺生成碳化聚合物点。所得材料呈现出与合成温度相关的结构和形态变化。在高分辨率透射电子显微镜(HR-TEM)中观察到,从低温下嵌入类似还原氧化石墨烯(rGO)片状结构中的碳点(CDs)到最高温度下的核壳结构的转变,这意味着形成了碳化聚合物点(CPDs)。X射线光电子能谱(XPS)证实了这些发现,显示出与HR-TEM结果一致的石墨化程度增强。在最低温度下合成的CPDs的光致发光光谱呈现多个发射峰,产生黄橙色。利用这些CPDs制造发光二极管(LEDs)会产生具有CIE坐标(0.378,0.522)的鲜艳亮绿色发射。此外,CPDs在不同极性的各种溶剂中表现出溶剂致变色现象,覆盖了整个可见光谱。这种有趣的溶剂致变色效应使CPDs成为极性探测应用中有前景的材料。