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N,N,N',N'-四甲基-1,3-丙二胺中的超快构象依赖性电荷转移:柔性碳骨架对电子孤对相互作用的影响

Ultrafast conformation-dependent charge transfer in N, N, N', N'-tetramethyl-1,3-propanediamine: Effect of flexible carbon skeleton on electron lone pair interactions.

作者信息

Abulimiti Bumaliya, Ma Jiajun, Wei Jie, An Huan, Wang Xiaoning, Yang Jie, Xiang Mei, Long Jinyou, Zhang Song, Zhang Bing

机构信息

Xinjiang Key Laboratory for Luminescence Minerals and Optical Functional Materials, School of Physics and Electronic Engineering, Xinjiang Normal University, Urumqi 830054, China; State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Innovation Academy for Precision Measurement Science and Technology, Chinese Academy of Sciences, Wuhan 430071, China.

Xinjiang Key Laboratory for Luminescence Minerals and Optical Functional Materials, School of Physics and Electronic Engineering, Xinjiang Normal University, Urumqi 830054, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2024 Nov 5;320:124628. doi: 10.1016/j.saa.2024.124628. Epub 2024 Jun 8.

Abstract

Flexible three-carbon skeleton makes N, N, N', N'-tetramethyl-1,3-propanediamine (TMPDA) an important diamine system to investigate the conformation-dependent electron lone pair interactions and charge delocalization. The charge transfer process linked to structural motions of the three-carbon skeleton has been monitored in real time by the Rydberg electron binding energy (BE) spectra of TMPDA coupled with quantum chemical calculations. Optical excitation to the 3p state with a 200 nm pump pulse initially generated a localized charge on one of the two nitrogen atoms that may partially transfer to the other one. Rapid internal conversion (IC) from the 3p to 3s state occurred within 430 fs, resulting in an initial charge delocalized 3s_h/3s_l population ratio of 23.6 %/76.4 %. A final 3s_h/3s_l (51.9 %/48.1 %) equilibrium proceeded within about 2.64 ps. The 3s_h (TTTT, GG'TG and G'GG'G) and 3s_l (GG'GG' and GG'G'G) (see text for structure definitions) are identified as the extended and folded conformers, respectively. Two types of electron lone pair interactions, i.e., through-space interaction (TSI) and through-bond interaction (TBI), are found to coexist in TMPDA to drive charge transfer. The GG'GG' and GG'G'G structures exhibit TSI, while the TTTT structure shows TBI. The GG'TG and G'GG'G structures exhibit both TSI and TBI. Flexible three-carbon skeleton provide more opportunities for the two N-electron lone pairs to overlap in space (i.e., TSI), making TMPDA to be favorable for the most stably folded conformation.

摘要

灵活的三碳骨架使N,N,N',N'-四甲基-1,3-丙二胺(TMPDA)成为研究构象依赖性电子孤对相互作用和电荷离域的重要二胺体系。通过TMPDA的里德堡电子结合能(BE)光谱结合量子化学计算,实时监测了与三碳骨架结构运动相关的电荷转移过程。用200nm泵浦脉冲光激发到3p态,最初在两个氮原子之一上产生局部电荷,该电荷可能部分转移到另一个氮原子上。在430fs内发生了从3p到3s态的快速内转换(IC),导致初始电荷离域的3s_h/3s_l布居比为23.6%/76.4%。最终的3s_h/3s_l(51.9%/48.1%)平衡在约2.64ps内达到。3s_h(TTTT、GG'TG和G'GG'G)和3s_l(GG'GG'和GG'G'G)(结构定义见正文)分别被确定为伸展构象和折叠构象。发现TMPDA中存在两种类型的电子孤对相互作用,即空间相互作用(TSI)和键间相互作用(TBI),以驱动电荷转移。GG'GG'和GG'G'G结构表现出TSI,而TTTT结构表现出TBI。GG'TG和G'GG'G结构同时表现出TSI和TBI。灵活的三碳骨架为两个N电子孤对在空间中重叠(即TSI)提供了更多机会,使TMPDA有利于最稳定的折叠构象。

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