研究目的
Investigating the electrochemical stability of CH3NH3PbCl1.08Br1.92 quantum dots (QDs) through electrogenerated chemiluminescence (ECL) and photoluminescence (PL) spectroelectrochemistry methods, and improving their ECL efficiency and stability by incorporating them into a polystyrene (PS) matrix.
研究成果
Incorporating MAPbX3 QDs into a PS matrix enhances their ECL stability and efficiency by minimizing the loss of methylammonium cations and halide ions. The study provides insights into addressing the ECL stability issue of perovskite QDs and suggests future work on using more conductive polymer matrices.
研究不足
The study highlights the poor structural stability of MAPbX3 perovskite QDs under electrochemical anodization and the challenges in achieving desired device performance. The use of a PS matrix improves stability but may affect conductivity and ECL response.