首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Tunable Electronic Properties of a Proton-Responsive N,N-Dimethylaminoazobenzene Fullerene (C_(60)) Dyad
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Tunable Electronic Properties of a Proton-Responsive N,N-Dimethylaminoazobenzene Fullerene (C_(60)) Dyad

机译:质子响应性N,N-二甲基氨基偶氮苯富勒烯(C_(60))Dyad的可调电子性质

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摘要

A basic N,N-dimethylaminoazobenzene-fullerene (C_(60)) dyad molecular skeleton is modelled and synthesized. In spite of the myriad use of azobenzene as a photo- and electrochromic moiety, the idea presented herein is to adopt a conceptually different path by using it as a bridge in a donor-bridge-acceptor single-molecular skeleton, connecting the electron acceptor N-methylfulleropyrrolidine with an electron donor N,N-dimethylaniline. Addition of trifluoroacetic acid (TFA) results in a drastic colour change of the dyad from yellow to pink in dichloromethane (DCM). The structure of the protonated species are established from electronic spectroscopy and time-dependent density functional theory (TD-DFT) calculations. UV/Vis spectroscopic investigations reveal the disappearance of the 409 nm ~1(π→π~*) transition with appearance of new features at 520 and 540 nm, attributed to protonated β and α nitrogens, respectively, along with a finite weight of the C_(60) pyrrolidinic nitrogen. Calculations reveal intermixing of n_((N N))→π~*_((N N)) and charge transfer (CT) transitions in the neutral dyad, whereas, the n_((N N))→π~*_((N N)) transition in the protonated dyad is buried under the dominant ~1(π →π~*) feature and is red-shifted upon Gaussian deconvolution. The experimental binding constants involved in the protonation of N,N-dimethylanilineazobenzene and the dyad imply an almost equal probability of existence of both α- and β-protonated forms. Larger binding constants for the protonated dyads imply more stable dyad complexes than for the donor counterparts. One of the most significant findings upon protonation resulted in frontier molecular orbital (FMO) switching with the dyad LUMO located on the donor part, evidenced from electrochemical investigations. The appearance of a new peak, prior to the first reduction potential of N-methylfulleropyrrolidine, clearly indicates location of the first incoming electron on the donor-centred LUMO of the dyad, corroborated by unrestricted DFT calculations performed on the monoanions of the protonated dyad. The protonation of the basic azo nitrogens thus enables a rational control over the energetics and location of the FMOs, indispensable for electron transport across molecular junctions in realizing futuristic current switching devices.A curious quest for azobenzenes beyond photoisomerisation leads to the observation of frontier molecular orbital (FMO) switching (see figure) in a first prototype fullerene (C_(60)) N,N-dimethylaminoazobenzene dyad. The spectroscopic signatures are assigned to specific protonated structures with the aid of time-dependent density functional theory (TD-DFT), shedding light on the fundamental, yet fascinating, phenomenon of protonation-induced FMO switching.
机译:建模并合成了基本的N,N-二甲基氨基偶氮苯-富勒烯(C_(60))二元分子骨架。尽管偶氮苯作为光致变色部分和电致变色部分的用途不计其数,但本文提出的想法是通过将其用作供体-桥-受体单分子骨架中的桥,连接电子受体N,采用概念上不同的路径。 -N-N-N-N-N-二甲基苯胺。加入三氟乙酸(TFA)会使二氯乙烷在二氯甲烷(DCM)中的颜色从黄色急剧变为粉红色。质子化物种的结构是通过电子光谱和随时间变化的密度泛函理论(TD-DFT)计算而建立的。 UV / Vis光谱研究显示409 nm〜1(π→π〜*)跃迁消失,并在520和540 nm处出现新的特征,分别归因于质子化的β和α氮,以及有限重量的C_(60)吡咯烷二氮。计算揭示了中性二元组中n _((NN))→π〜* _((NN))的混合和电荷转移(CT)跃迁,而n _((NN))→π〜* _((NN) )在质子化二元组中的过渡被掩盖在主要的〜1(π→π〜*)特征下,并在高斯反卷积时发生红移。 N,N-二甲基苯胺偶氮苯和二元体质子化所涉及的实验结合常数表明,存在α-质子化和β-质子化形式的可能性几乎相等。质子化二元体的结合常数较大,比供体对应物更稳定。质子化过程中最重要的发现之一导致边界分子轨道(FMO)切换,而二倍体LUMO位于供体部分,这是电化学研究证明的。在N-甲基全氟吡咯烷的第一个还原电位之前出现一个新的峰,清楚地表明了第一个入射电子在二元体以施主为中心的LUMO上的位置,这通过对质子化二元阴离子进行无限制DFT计算得到了证实。碱性偶氮氮的质子化因此可以实现对FMO的能量和位置的合理控制,这对于实现未来的电流开关设备中的电子跨分子连接来说是必不可少的。在第一个原型富勒烯(C_(60))N,N-二甲基氨基偶氮苯二聚体中进行(FMO)转换(见图)。借助依赖于时间的密度泛函理论(TD-DFT),将光谱特征分配给特定的质子化结构,从而揭示质子化诱导的FMO转换的基本但引人入胜的现象。

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