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Is high electric field capable of selectively inducing a covalent-like bond between polar and non-polar molecular species?

机译:高电场能够选择性地诱导极性和非极性分子之间的共价键吗?

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摘要

It is demonstrated through the present ab initio theoretical investigation that an external electric field can bring about a phenomenal enhancement in the strength of the bond between water and carbon-dioxide molecules from a van der Waals type (binding energy ~ 0.085 eV), to strong covalent type (binding energy ~7.45 eV), resulting in an exotic molecular complex. The onset of this effect is characterized by an abrupt change in the dipole moment of the composite system at a particular field-value, concomitant with the O-C= O <-> O=C- O resonance in the C O2 moiety of the complex. This field-induced bond formation is further confirmed by the emergence of a characteristic intermolecular stretching mode (~317 cm~(-1)) in the vibrational response of the system. This exotic bond that exhibits a covalent-like character, which accompanied by a charge-transfer, renders the carbon atom a substantial negative charge.
机译:通过目前的从头开始的理论研究表明,外部电场可以使范德华型(结合能〜0.085 eV)的水与二氧化碳分子之间的键合强度显着提高,达到强共价型(结合能〜7.45 eV),形成奇特的分子复合物。这种作用的开始的特征是复合系统的偶极矩在特定场值处突然改变,并伴随着配合物的CO 2部分中的O-C = O-O = C-O共振。这种场诱导键的形成进一步被系统的振动响应中特征性的分子间拉伸模式(〜317 cm〜(-1))的出现所证实。这种奇异的键表现出类似共价键的特征,并伴随电荷转移,使碳原子具有大量负电荷。

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