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How was the proton transfer process in bis-3 6-(2- benzoxazolyl)-pyrocatechol single or double proton transfer?

机译:bis-3、6-(2-苯并恶唑基)-邻苯二酚单或双质子转移中的质子转移过程如何?

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摘要

A theoretical analysis of proton transfer process for the symmetric systems with two intramolecular hydrogen bonds, bis-3,6-(2-benzoxazolyl)-pyrocatechol(BBPC) in hexane solvent, has been researched. In this study, we utilized ωB97X-D/ 6-311 + g (d,p) and B3LYP/6-31 + G(d) two procedures calculating the foremost bond length and bond angle, respectively. Our calculations demonstrate the two intramolecular hydrogen bonds were strengthened in S1 state, thus the proton transfer reaction can be facilitated. Furthermore, the calculated IR vibrational spectra confirmed hydrogen bonds were enhanced in S1 state. We found three local minima A B and C from the potential energy surfaces (PESs) on the S1 state, and the energy of B point and C point are identical. A new ESIPT mechanism has been proposed that was not equal to the previous conclusions. The new ESIPT mechanism elucidates that single proton transfer more likely occurs in the symmetric BBPC molecule in comparison with the double proton transfer reaction. And the frontier molecular orbitals(MOs) further illustrate the trend of ESIPT reaction.
机译:对具有两个分子内氢键的双3,6-(2-苯并恶唑基)-邻苯二酚(BBPC)在己烷溶剂中的对称体系的质子转移过程进行了理论分析。在这项研究中,我们利用ωB97X-D/ 6-311 + g(d,p)和B3LYP / 6-31 + G(d)两种方法分别计算了最主要的键长和键角。我们的计算表明,两个分子内氢键在S1状态下得到了增强,因此可以促进质子转移反应。此外,计算的IR振动光谱证实在S1状态下氢键增强。我们从S1态的势能面(PESs)中发现了三个局部最小值A B和C,并且B点和C点的能量相同。已经提出了一种新的ESIPT机制,该机制与先前的结论不相同。新的ESIPT机制阐明了与双质子转移反应相比,单质子转移更可能发生在对称BBPC分子中。前沿分子轨道进一步说明了ESIPT反应的趋势。

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