在氨基类型的印度尔-三聚胺衍生物中的超快质子合电子转移动力学
Shengsheng Wei1, Zicong Situ1, Jiawen Zhang1
1State Key Laboratory of Information Photonic and Optical Communications and School of Science, Beijing University of Posts and Telecommunications (BUPT), Beijing 100876, P. R. China.
新型In-TAP衍生物中的质子合电子转移 (PCET) 通过N-H···N键发生超快 (∼150 fs). 这项研究揭示了一个新的PCET机制,影响分子光物理.
科学领域:
- 摄影化学的使用.
- 物理化学 物理化学
- 分子光谱学 分子光谱学
背景情况:
- 激发状态的分子内质子转移 (ESIPT) 是一个基本的光物理过程.
- ESIPT可以与电子转移 (ET) 结合,形成质子结合电子转移 (PCET).
- 了解PCET机制对于设计先进的分子系统至关重要.
研究的目的:
- 为了阐明光诱导的PCET机制在7-(英多尔-2-) -三烯胺 (In-TAP) 衍生物中.
- 研究化学修饰对ESIPT动力学和光物理性质的影响.
- 探索一种新的N-H···N型结分子框架,用于PCET.
主要方法:
- 超快速光谱 (女性秒时间尺度).
- 计算建模用于分析电荷转移特征.
- 溶染色排放研究 溶染色排放研究.
主要成果:
- 在In-TAP衍生物中观察到一个超快的ESIPT反应 (∼150 fs),在溶剂极化之前.
- 化学修饰诱导了可调节的短距离和远距离的电荷传输特性.
- 强烈的solvatochromic T*发射被归因于与溶解相关的兴奋状态质子转移 (ESIET).
结论:
- 为PCET提出了一个新的N-H···N型分子框架.
- 观察到的PCET机制接近于B情况的机制 (质子转移之前的电子转移).
- 这项工作扩大了对PCET的理解,超出了像diCN-HBO和HBODC这样的既定系统.
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