Synthesis of Symmetrical Silane Containing P═O Bonds and Their Passivation of Perovskites

IF 4.3 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Baoyang Dai, Shanshan Yan, Zhimi Chen, Tucai Zheng, Jie Qin, Junhua Zhao, Wanting Jin, Chunhui Zhou, Li Wan, Xing Su and Chuanhua Gao*, 
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Abstract

Perovskite quantum dots (QDs) exhibit unique advantages, including a wide color gamut, narrow full width at half-maximum, cost-effectiveness, and high-efficiency luminescence, positioning them as a significant focus in contemporary optoelectronic research. Nevertheless, the synthesis of QDs often introduces crystal defects, while conventional in situ ligands can detrimentally affect the optoelectronic properties of perovskites. To overcome these challenges, we synthesized a symmetrical silane-based passivating agent containing phosphorus–oxygen double bonds. This agent enabled the in situ passivation of perovskites, significantly improving their optical performance and stability. Results showed that postpassivation QDs demonstrated bright green photoluminescence (PL) at 525 nm, with a 28% enhancement in PL intensity, a 16% increase in photoluminescence quantum yield, and an average lifetime (τave) extended by 191.2 ns. Furthermore, the thermal stability at 80 °C improved by 3.75-fold, and the stability under 84% relative humidity conditions increased by 21%. 1,3-bis(3-diethoxyphosphorylpropyl)-1,1,3,3-tetramethyldisiloxane (SPE)-passivated perovskites are viable for practical applications.

含P = O键对称硅烷的合成及其对钙钛矿的钝化
钙钛矿量子点(QDs)具有宽色域、半最大全宽窄、成本效益高、发光效率高等独特优势,成为当代光电研究的重要热点。然而,量子点的合成往往会引入晶体缺陷,而传统的原位配体会对钙钛矿的光电性能产生不利影响。为了克服这些挑战,我们合成了一种含有磷氧双键的对称硅烷基钝化剂。该试剂使钙钛矿的原位钝化,显著提高其光学性能和稳定性。结果表明,钝化后的量子点在525 nm处发出亮绿色光致发光(PL),发光强度增强28%,光致发光量子产率提高16%,平均寿命τave延长191.2 ns。80℃时的热稳定性提高了3.75倍,84%相对湿度条件下的稳定性提高了21%。1,3-二(3-二氧基磷酸丙基)-1,1,3,3-四甲基二硅氧烷(SPE)钝化钙钛矿具有实际应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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