Bruschi Maurizio, Fantucci Piercarlo, Pizzotti Maddalena
Department of Environmental Science, University of Milano-Bicocca, Piazza della Scienza 1, 20126 Milan, Italy.
J Phys Chem A. 2005 Oct 27;109(42):9637-45. doi: 10.1021/jp052569y.
In this work, we report an ab initio investigation of second-order nonlinear optical (NLO) properties and absorption electronic spectra of push-pull transition metal chromophores of the formula [M(CO)(5)L] (M = Cr, W; L = pyridine (Py), 4-formyl-pyridine (PyCHO), pyrazine (Pyz), trans-1,2-bis(4-pyridyl)ethylene (BPE)). Pyz and BPE are considered either with one nitrogen atom free or interacting with the strong acceptor BF(3). All of the molecular properties have been calculated using two different and methodologically independent approaches: the time dependent and coupled perturbed density functional theories (TDDFT and CPDFT) and the sum-over-states (SOS) approach, where the excited states are obtained via the single configuration interaction (SCI) ab initio method. DFT results are in acceptable agreement with the experimental energy values of electronic transitions (with the exception of chromophores with the large pi-delocalization, like BPE); SCI calculations overestimate excitation energies and produce an inversion in the order of d(M) --> pi(L) and d(M) --> pi(CO) transitions. The SCI-SOS approach gives first-order hyperpolarizabilities, basically in agreement as trend and values with the experiments and seems to be a tool generally suitable for the evaluation of these properties also for transition metal complexes. On the other hand, the first-order hyperpolarizabilities computed using the CPDFT approach are consistently overestimated in comparison with the experimental results, especially in the case of a ligand with large pi-delocalization. We also show that the "two-level" approximation taking into account only the lowest energy charge transfer excitation (e.g., d(M) --> pi(L)) is not applicable to chromophores with the extended pi-delocalized ligand (BPE) coordinated to a transition metal, due to significant contributions originating from intraligand pi(L) --> pi(L) transitions. This study reports a detailed analysis and comparison of electronic NLO effects of transition metal complexes computed with DFT and ab initio SCI-SOS methodology.
在本工作中,我们报告了对通式为[M(CO)(5)L](M = Cr、W;L = 吡啶(Py)、4-甲酰基吡啶(PyCHO)、吡嗪(Pyz)、反式-1,2-双(4-吡啶基)乙烯(BPE))的推挽型过渡金属发色团的二阶非线性光学(NLO)性质和吸收电子光谱进行的从头算研究。Pyz和BPE被考虑为一个氮原子游离或者与强受体BF(3)相互作用的情况。所有分子性质均使用两种不同且方法上相互独立的方法进行了计算:含时和耦合微扰密度泛函理论(TDDFT和CPDFT)以及态叠加(SOS)方法,其中激发态通过单组态相互作用(SCI)从头算方法获得。DFT结果与电子跃迁的实验能量值具有可接受的一致性(除了具有大π离域的发色团,如BPE);SCI计算高估了激发能,并导致d(M)→π(L)和d(M)→π(CO)跃迁顺序的反转。SCI - SOS方法给出的一阶超极化率,在趋势和数值上基本与实验结果一致,似乎是一种通常也适用于评估过渡金属配合物这些性质的工具。另一方面,与实验结果相比,使用CPDFT方法计算的一阶超极化率一直被高估,特别是在具有大π离域的配体的情况下。我们还表明,仅考虑最低能量电荷转移激发(例如,d(M)→π(L))的“双能级”近似不适用于与过渡金属配位的具有扩展π离域配体(BPE)的发色团,这是由于配体内π(L)→π(L)跃迁产生的显著贡献。本研究报告了用DFT和从头算SCI - SOS方法计算的过渡金属配合物电子NLO效应的详细分析和比较。