首页> 外文期刊>Journal of Solution Chemistry >Photophysical Investigations on Determination of Ionicity and Electronic Structures for the Non-covalent Complexes of Calix[4]resorcinarene with Fullerenes C60 and C70 in the Solution State
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Photophysical Investigations on Determination of Ionicity and Electronic Structures for the Non-covalent Complexes of Calix[4]resorcinarene with Fullerenes C60 and C70 in the Solution State

机译:测定溶液中杯[4]间苯二芳烃与富勒烯C 60 和C 70 的非共价配合物的离子性和电子结构的光物理研究

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Ground state non-covalent interactions between a macrocyclic receptor, C-methylcalix[4]resorcinarene (1) and fullerenes (C60 and C70) have been studied in benzonitrile by an absorption spectrophotometric method. Absorption bands are located in the visible region due to the charge transfer (CT) transition between 1 and various electron acceptors (including fullerenes), namely, 2,3-dichloro-5,6-dicyano-p-benzoquinone, tetracyanoquinodimethane and p-chloranil. Utilizing the CT absorption bands, various important physicochemical parameters, including oscillator strength, resonance energy, transition dipole strength of all the acceptor-1 complexes and vertical ionization potential of 1 are determined. Job’s method of continuous variation reveals 1:1 stoichiometry between fullerenes and 1. The most fascinating feature of the present study is that 1 binds selectively to C70 compared to C60 as obtained from binding constant (K) data of C60-1 (KC60-1K_{mathrm{C}60mbox{-}mathbf{1}}) and C70-1 (KC70-1K_{mathrm{C}70mbox{-}mathbf{1}}) complexes, i.e., KC60-1=190K_{mathrm{C}60mbox{-}mathbf{1}}=190 dm3⋅mol−1 and KC70-1=5,800K_{mathrm{C}70mbox{-}mathbf{1}}=5{,}800 dm3⋅mol−1 and selectivity (KC70-1 /KC60-1 ) ∼30. Quantum chemical calculations based on hybrid density functional theory estimate the enthalpies of formation of the fullerene-1 complexes in vacuo and provide very good support for selectivity in the K values of the C70 and C60 complexes of 1. The exchange and correlation energies have been calculated using a hybrid DFT functional method. We have opted to use the hybrid DFT functional over the Hartree-Fock method, as it can account for correlation effects also. Molecular electrostatic potential map calculations give a clear picture on the electronic structures of the fullerene-1 complexes.
机译:通过在苄腈中研究了大环受体,C-methylcalix [4]间苯二甲烯(1)和富勒烯(C 60 和C 70 )之间的基态非共价相互作用。吸收分光光度法。由于1和各种电子受体(包括富勒烯)之间的电荷转移(CT)跃迁,吸收带位于可见光区域,这些电子受体即2,3-二氯-5,6-二氰基对苯醌,四氰基喹二甲烷和p-氯乙腈。利用CT吸收带,确定了各种重要的物理化学参数,包括振荡器强度,共振能,所有受体1配合物的跃迁偶极强度和垂直电离势为1。 Job的连续变化方法揭示了富勒烯与1之间的化学计量比为1:1。本研究最令人着迷的特征是,与C 60 相比,1与C 70 选择性结合。从C 60 -1(K C60-1 K_ {mathrm {C} 60mbox {-} mathbf {1}})的绑定常数(K)数据获得 70 -1(K C70-1 K_ {mathrm {C} 70mbox {-} mathbf {1}})复合体,即K C60-1 < / sub> = 190K_ {mathrm {C} 60mbox {-} mathbf {1}} = 190 dm 3 ⋅mol -1 和K C70-1 < / sub> = 5,800K_ {mathrm {C} 70mbox {-} mathbf {1}} = 5 {,} 800 dm 3 ⋅mol -1 和选择性(K C70-1 / K C60-1 )约30。基于混合密度泛函理论的量子化学计算估计了富勒烯1配合物在真空中的形成焓,并为C 70 和C 60的K值的选择性提供了很好的支持。 的复合物1.交换能和相关能已使用混合DFT泛函方法进行了计算。我们选择在Hartree-Fock方法上使用混合DFT功能,因为它也可以考虑相关效应。分子静电势图计算提供了关于富勒烯1配合物的电子结构的清晰图像。

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