Mazzoni Federico, Becucci Maurizio, Řezáč Jan, Nachtigallová Dana, Michels François, Hobza Pavel, Müller-Dethlefs Klaus
Dipartimento di Chimica 'Ugo Schiff' Università di Firenze, via della Lastruccia 3 and LENS, via N. Carrara 1, 50019 Sesto Fiorentino (FI), Italy.
Phys Chem Chem Phys. 2015 May 21;17(19):12530-7. doi: 10.1039/c5cp01166c.
We present a concerted experimental and theoretical study of the anisole···Arn complexes with n = 1-3. Experimentally, anisole was seeded into a pulsed supersonic argon jet producing a molecular beam. Resonant two-photon, two-colour ionisation (R2PI) spectra of anisole···Arn complexes with n = 1-3 were obtained. Also, the photodissociation of the (1 : 1) cluster was probed synchronously by - Zero Electron Kinetic Energy Photoelectron Spectroscopy (ZEKE) - and - Mass Resolved Threshold Ionization (MATI) - measuring electrons and ions obtained from pulsed field ionization of high-n Rydberg states upon two-colour laser excitation. The experimental results are compared to quantum chemical calculations at the DFT-D3 (B-LYP/def2-QZVP level with Grimme's D3 dispersion correction) level. Structure and energetics due to microsolvation effects by the direct interaction of the argon atoms with the π-system were evaluated. The experimental binding energy of the 1 : 1 cluster is finally compared to computational results; in the S0 ground state the theoretical value based on the "gold standard" CCSD(T)/CBS calculations lies within the error bars of the observed value. In the excited state the agreement between theory and experiment is not so spectacular but relative values of observed dissociation energies (D0) in the ground and excited states and of calculated ones agree well.
我们对n = 1 - 3的苯甲醚···Arn配合物进行了协同的实验和理论研究。实验方面,将苯甲醚注入脉冲超声氩气射流中以产生分子束。获得了n = 1 - 3的苯甲醚···Arn配合物的共振双光子双色电离(R2PI)光谱。此外,通过零电子动能光电子能谱(ZEKE)和质量分辨阈值电离(MATI)同步探测(1∶1)团簇的光解离,测量双色激光激发高n里德堡态脉冲场电离产生的电子和离子。将实验结果与DFT - D3(采用Grimme的D3色散校正的B - LYP/def2 - QZVP水平)的量子化学计算结果进行比较。评估了由于氩原子与π体系直接相互作用产生的微溶剂化效应导致的结构和能量。最后将1∶1团簇的实验结合能与计算结果进行比较;在S0基态下,基于“金标准”CCSD(T)/CBS计算的理论值在观测值的误差范围内。在激发态下,理论与实验之间的一致性并不那么显著,但基态和激发态下观测到的解离能(D0)的相对值与计算值吻合良好。