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Multireference exciplex binding energies: Basis set convergence and error

机译:多重引用Exciplex绑定能量:基础设置收敛和错误

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In multichromophore systems, characterization of electronic structure requires characterization of exciplexes, electron-hole pairs delocalized over multiple molecules. Computing exciplex binding energy requires an accurate description of both the noncovalent interactions between the chromophores and their excited electronic states. The critical role of basis set selection for accurate description of noncovalent interactions is well known, but for some of the most accurate excited-state methods, basis set dependence is incompletely understood. In this work, the impact of basis set size and diffuseness on CASSCF/NEVPT2 binding energies is determined for three systems in their lowest singlet excited states: the benzene excimer, the cis-butadiene-benzene exciplex, and the benzene-naphthalene exciplex. We demonstrate that excellent CBS binding energies may be obtained using the moderately-sized jun-cc-pV(D+d)Z and jun-cc-pV(T+d)Z basis sets and a simple N-3 model. Repeating this procedure with the basis sets from the most diffuse basis set family applied to each system yields a binding energy of 56.6 +/- 1.2 kJ/mol for the benzene excimer and binding energies of 11.1 +/- 0.5 kJ/mol and 19.2 +/- 1.7 kJ/mol for the cis-butadiene-benzene exciplex and the benzene-naphthalene exciplex, respectively.
机译:在多晶光学系统中,电子结构的表征需要Exciplexes的表征,电子空穴对在多个分子上划分。计算Exciplex结合能量需要准确描述发色团和其激发电子状态之间的非共价相互作用。基础设定选择对非共价相互作用的准确描述的关键作用是众所周知的,但对于一些最准确的兴奋状态方法,基础设定依赖性被不完全理解。在这项工作中,基础设定尺寸和扩散对CASSCF / NEVPT2结合能的影响是在其最低单线时兴奋状态下的三种系统中的:苯基促进剂,顺式 - 丁二烯 - 苯分泌物和苯 - 萘反应性。我们证明可以使用中等尺寸的JUN-CC-PV(D + D)Z和JUN-CC-PV(T + D)Z基础集和简单的N-3模型来获得优异的CBS结合能量。从应用于每个系统的最多漫反射的基础集合的基础集合重复该过程产生56.6 +/- 1.2 kJ / mol的结合能量,用于苯二烯准分子和11.1 +/- 0.5kJ / mol和19.2 +的结合能量。 / - 配合丁二烯 - 苯分子ExciL和苯 - 萘切除苯丙酚的1.7 kJ / mol。

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