纳米晶
动力学
降级(电信)
材料科学
机制(生物学)
化学工程
热的
反应机理
化学动力学
纳米技术
物理化学
化学
热力学
催化作用
物理
计算机科学
有机化学
工程类
电信
量子力学
作者
Priyanka Priyanka,Avinash Rundla,B. Navin Kumar,Pushpendra Kumar,Kedar Singh
标识
DOI:10.1021/acs.jpcc.4c05757
摘要
Cesium lead halide perovskite nanocrystals (NCs) are highly regarded for their potential in solar cells, photodetectors, and X/γ-ray detectors. However, their moisture sensitivity and thermal instability limit their applications, which entail a thorough understanding of their thermal degradation mechanisms. In this study, we investigate the thermal degradation kinetics of CsPbBr3 NCs spanning temperatures from 25 to 800 °C using thermogravimetric analysis (TGA). The Coats–Redfern method was employed to analyze the kinetics across various models, determining key parameters such as the correlation coefficient (R2), activation energy (Ea), and pre-exponential factor (A). Differential thermogravimetric (DTG) analysis revealed six distinct peaks, indicating six major thermal events. Consequently, the weight loss curve was divided into six zones, and kinetic parameters were calculated for each zone using multiple kinetic models. Utilizing the kinetic triplet, we further determined the thermodynamic parameters including enthalpy change (ΔH), entropy change (ΔS), and Gibbs free energy change (ΔG) for each zone. This comprehensive analysis enhances the understanding of the thermal stability and degradation mechanisms of CsPbBr3, paving the way for advanced applications in various fields.
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