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Charge-Transfer State and Large First Hyperpolarizability Constant in a Highly Electronically Coupled Zinc and Gold Porphyrin Dyad

机译:高度电耦合的锌和金卟啉双键的电荷转移状态和较大的第一超极化常数

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摘要

We report the synthesis and the characterizations of a novel dyad composed of a zinc porphyrin (ZnP) linked to a gold porphyrin (AuP)through an ethynyl spacer. The UV/Vis absorption spectrum and the electrochemical properties clearly reveal that this dyad exhibits a strong electronic coupling in the ground state as evidenced by shifted redox potentials and the appearance of an intense chargetransfer band localized at l=739 nm in dichloromethane. A spectroelectrochemical study of the dyad along with the parent homometallic system (i.e., ZnP–ZnP and AuP–AuP) was undertaken to determine the spectra of the reduced and oxidized porphyrin units. Femtosecond transient absorption spectroscopic analysis showed that the photoexcitation of the heterometallic dyad leads to an ultrafast formation of a charge-separated state (+ZnP–AuPC) that displays a particularly long lifetime (t=4 ns in toluene) for such a short sep aration distance. The molecular orbitals of the dyad were determined by DFT quantum-chemical calculations. This theoretical study confirms that the observed intense band at l=739 nm corresponds to an interporphyrin charge-transfer transition from the HOMO orbital localized on the zinc porphyrin to LUMO orbitals localized on the gold porphyrin. Finally, a Hyper–Rayleigh scattering study shows that the dyad possesses a large first molecular hyperpolarizability coefficient (b=2100-10-30 esu at l= 1064 nm), thus highlighting the valuable nonlinear optical properties of this new type of push–pull porphyrin system.
机译:我们报告的合成和表征由乙炔间隔基链接到金卟啉(AuP)的锌卟啉(ZnP)的新型二元组。 UV / Vis吸收光谱和电化学性质清楚地表明,该二重化合物在基态下表现出强电子耦合,这由氧化还原电位的移动和在二氯甲烷中位于1 = 739 nm处的强电荷转移带的出现所证明。对二重体及其母体同金属系统(即ZnP–ZnP和AuP–AuP)进行了光谱电化学研究,以确定还原和氧化的卟啉单元的光谱。飞秒瞬态吸收光谱分析表明,对异金属二元化合物的光激发导致超快形成电荷分离态(+ ZnP–AuPC),在如此短的分离时间内显示出特别长的寿命(甲苯中t = 4 ns)距离。通过DFT量子化学计算确定了二元组的分子轨道。该理论研究证实,在l = 739 nm处观察到的强带对应于卟啉间电荷转移转移,该电荷转移转移从位于卟啉锌上的HOMO轨道到位于卟啉金上的LUMO轨道。最后,Hyper-Rayleigh散射研究表明,二元组具有较大的第一分子超极化系数(在l = 1064 nm处,b = 2100-10-30 esu),从而突显了这种新型推挽式光学系统的宝贵非线性光学特性。卟啉系统。

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