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铜酞菁的非延迟伦敦色散系数和哈梅克常数的计算

Computation of Nonretarded London Dispersion Coefficients and Hamaker Constants of Copper Phthalocyanine.

作者信息

Zhao Yan, Ng Hou T, Hanson Eric, Dong Jiannan, Corti David S, Franses Elias I

机构信息

Commercial Print Engine Lab, HP Laboratories, Hewlett-Packard Co., 1501 Page Mill Road, Palo Alto, California 94304.

School of Chemical Engineering, Purdue University, 480 Stadium Mall Drive, West Lafayette, Indiana 47907-2100.

出版信息

J Chem Theory Comput. 2010 Feb 9;6(2):491-8. doi: 10.1021/ct900431a.

Abstract

A time-dependent density functional theory (TDDFT) scheme has been validated for predictions of the dispersion coefficients of five molecules (H2O, NH3, CO2, C6H6, and pentane) and for predictions of the static dipole polarizabilities of three organometallic compounds (TiCl4, OsO4, and Ge(CH3)4). The convergence of grid spacing has been examined, and two types of pseudopotentials and 13 density functionals have been tested. The nonretarded Hamaker constants A11 are calculated by employing a semiempirical parameter a along with the standard Hamaker constant equation. The parameter a is optimized against six accurate Hamaker constants obtained from the full Lifshitz theory. The dispersion coefficients of copper phthalocyanine CuPc and CuPc-SO3H are then computed. Using the theoretical densities of ρ1 = 1.63 and 1.62 g/cm(3), the Hamaker constants A11 of crystalline α-CuPc and β-CuPc are found to be 14.73 × 10(-20) and 14.66 × 10(-20) J, respectively. Using the experimentally derived density of ρ1 = 1.56 g/cm(3) for a commercially available β-CuPc (nanoparticles of ∼90 nm hydrodynamic diameter), A11 = 13.52 × 10(-20) J is found. Its corresponding effective Hamaker constant in water (A121) is calculated to be 3.07 × 10(-20) J. All computed A11 values for CuPc are noted to be higher than those reported previously.

摘要

一种含时密度泛函理论(TDDFT)方案已被验证可用于预测五种分子(H₂O、NH₃、CO₂、C₆H₆和戊烷)的色散系数,以及预测三种有机金属化合物(TiCl₄、OsO₄和Ge(CH₃)₄)的静态偶极极化率。已研究了网格间距的收敛性,并测试了两种类型的赝势和13种密度泛函。通过使用半经验参数a以及标准哈梅克常数方程来计算非延迟哈梅克常数A₁₁。该参数a针对从完整的 Lifshitz 理论获得的六个精确哈梅克常数进行了优化。然后计算了铜酞菁 CuPc 和 CuPc-SO₃H 的色散系数。利用理论密度ρ₁ = 1.63 和 1.62 g/cm³,发现结晶α-CuPc 和β-CuPc 的哈梅克常数A₁₁分别为14.73×10⁻²⁰ 和14.66×10⁻²⁰ J。对于市售的β-CuPc(流体动力学直径约为90 nm 的纳米颗粒),利用实验得出的密度ρ₁ = 1.56 g/cm³,发现A₁₁ = 13.52×10⁻²⁰ J。其在水中相应的有效哈梅克常数(A₁₂₁)经计算为3.07×1⁻²⁰ J。注意到所有计算得到的 CuPc 的A₁₁值均高于先前报道的值。

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