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首页> 外文期刊>ACS Omega >Theoretical Prediction on a Novel Reduction-Responsive Nanoring Having a Disulfide Group for Facile Encapsulation and Release of Fullerenes C60 and C70
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Theoretical Prediction on a Novel Reduction-Responsive Nanoring Having a Disulfide Group for Facile Encapsulation and Release of Fullerenes C60 and C70

机译:具有二硫体封装和富勒烯C60和C70释放的二硫酰基的新型响应响应纳米的理论预测

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In this work, a novel reduction-responsive disulfide bond-containing cycloparaphenylene nanoring molecule (DSCPP) with a pyriform shape has been designed. In addition, the interactions between the designed nanoring (host) and fullerenes C_(60) and C_(70) (guests) were investigated theoretically at the M06-2X/6-31G(d,p) and M06-L/MIDI! levels of theory. By analyzing geometric characteristics and host–guest binding energies, it is revealed that the designed DSCPP is an ideal host molecule of guests C_(60) and C_(70). DSCPP presents excellent elastic deformation during the encapsulation of C_(60) and C_(70). The high binding energies suggest that both DSCPP?C_(60) and DSCPP?C_(70) (~92 and 118 kJ·mol~(–1) at the M06-2X/6-31G(d,p) level of theory) are stable host–guest complexes, and the guest C_(70) is more strongly encapsulated than C_(60) in the gas phase. The thermodynamic information indicates that the formation of the two host–guest complexes is thermodynamically spontaneous. In addition, the frontier molecular orbital (FMO) features and intermolecular weak interaction region between DSCPP and fullerenes gusts are discussed to further understand the structures and properties of the DSCPP?fullerene systems. Finally, the ring-opening mechanism of the DSCPP under reduction conditions is investigated.
机译:在这项工作中,设计了一种新的响应响应性二硫键的环丙炔基纳环纳米分子(DSCPP),已经设计了圆形形状。此外,理论上在M06-2X / 6-31G(D,P)和M06-L / MIDI(D,P)和M06-L / MINI之间研究了所设计的纳米(宿主)和富勒烯C_(60)和C_(70)(GABERS)之间的相互作用!理论水平。通过分析几何特征和宿主绑定能量,揭示了设计的DSCPP是Girth的理想主机分子C_(60)和C_(70)。 DSCPP在C_(60)和C_(70)的封装期间具有出色的弹性变形。高绑定能量表明DSCPP?C_(60)和DSCPP?C_(70)(〜92和118 kJ·mol〜(-1)在M06-2X / 6-31G(D,P)理论水平)是稳定的宿主 - 客户复合物,客人C_(70)比气相中的C_(60)更强烈封装。热力学信息表明,两位宿主客户复合物的形成是热力学自发的。此外,讨论了DSCPP和富勒烯阵列之间的前沿分子轨道(FMO)特征和分子间弱相互作用区域,以进一步了解DSCPP的结构和性质富勒烯系统。最后,研究了DSCPP在减少条件下的开环机制。

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