Tin halide perovskites (THPs) have demonstrated exceptional potential for various applications owing to their
low toxicity and excellent optoelectronic properties. However, the crystallization kinetics of THPs are less controllable than its lead counterpart because of the higher Lewis acidity of Sn2+, leading to THP films with poor morphology and rampant defects. Here, a colloidal zeta potential modulation approach is developed to improve the crystallization kinetics of THP films inspired by the classical Derjaguin-Landau-Verwey-Overbeek (DLVO) theory. After adding 3- aminopyrrolidine dihydro iodate (APDI2) in the precursor solution to change the zeta potential of the pristine colloids, the total interaction potential energy between colloidal particles with APDI2 could be controllably reduced, resulting in a higher coagulation probability and a lower critical nuclei concentration. In situ laser light scattering measurements confirmed the increased nucleation rate of the THP colloids with APDI2. The resulting film with APDI2 shows a pinholefree morphology with fewer defects, achieving an impressive efficiency of 15.13%
ملخص البحث
تاريخ البحث
قسم البحث
مستند البحث
مجلة البحث
Angewandte Chemie International Edition
المشارك في البحث
الناشر
Wiley-VCH on behalf of the German Chemical Society
عدد البحث
Volume63, Issue17
موقع البحث
https://onlinelibrary.wiley.com/doi/10.1002/anie.202317794
سنة البحث
2024
صفحات البحث
e202317794