Polarizabilities of amino acid residues

被引:0
|
作者
Swart, Marcel [1 ]
Snijders, Jaap G. [2 ]
Van Duijnen, Piet Th. [2 ]
机构
[1] Organische en Anorganische Chemie, Vrije Universiteit Amsterdam, De Boelelaan 1083, Amsterdam
[2] Theoretische Chemie, Rijksuniversiteit Groningen, Nijenborgh 4, Groningen
关键词
(Time Dependent) Density Functional Theory; amino acid residues; polarizabilities; polarizable force field;
D O I
10.3233/jcm-2004-4317
中图分类号
学科分类号
摘要
Over the last couple of years, it has been shown that Time Dependent Density Functional Theory (TD-DFT) is able to predict accurately and efficiently the polarizability of molecules, when using appropriate exchange-correlation potentials and (large) basis sets. In a previous paper, we compared the accuracy of the predicted mean polarizabilities of 15 organic molecules with experiment, and with two other computational methods: the Restricted Hartree-Fock (RHF) method and the Direct Reaction Field (DRF) approach, the first of which is ignored in this paper. The (empirical) DRF approach however was shown to give comparable accuracies to TD-DFT with the values computed in just a few seconds. In this paper, we use TD-DFT to compute molecular polarizabilities of the twenty amino acid residues, and compare them with the results obtained with the DRF approach. Although the mean absolute deviation of the DRF values from the TD-DFT values is reasonable (7%), it is more than two times the accuracy normally found with the DRF approach. Therefore we decided to optimize the atomic parameters for these systems, and found after optimization, a good agreement with the TD-DFT values (mean absolute deviation 1.0%). As the TD-DFT calculations were necessarily obtained with two additional hydrogens to saturate the backbone bonds, the molecular value of the polarizability of the amino acid residues is overestimated by the TD-DFT calculations. Therefore, the DRF approach (with the newly optimized atomic parameters) has been used to get the actual polarizabilities of the amino acid residues. © 2004 - IOS Press and the authors. All rights reserved.
引用
收藏
页码:419 / 425
页数:6
相关论文
共 50 条
  • [21] Determination of static dipole polarizabilities of Yb atom
    唐志明
    于艳梅
    董晨钟
    Chinese Physics B, 2018, 27 (06) : 222 - 226
  • [22] Calculation of the pressure dependence of anion polarizabilities in crystals
    Monard, MC
    Batana, A
    Bruno, JAO
    COMPUTERS & CHEMISTRY, 1999, 23 (05): : 493 - 501
  • [23] Determination of static dipole polarizabilities of Yb atom
    Tang, Zhi-Ming
    Yu, Yan-Mei
    Dong, Chen-Zhong
    CHINESE PHYSICS B, 2018, 27 (06)
  • [24] Electromagnetic corrections for pions and kaons: Masses and polarizabilities
    Bijnens, J
    Prades, J
    NUCLEAR PHYSICS B, 1997, 490 (1-2) : 239 - 271
  • [25] Atomic Polarizabilities and Dispersion Energy Coefficients.
    Wheatley, Richard J.
    Lillestolen, Timothy C.
    COMPUTATIONAL METHODS IN SCIENCE AND ENGINEERING, VOL 1: ADVANCES IN COMPUTATIONAL SCIENCE, 2009, 1108 : 168 - +
  • [26] Polarizabilities and Hyperpolarizabilities for Lithium Atoms in Debye Plasmas
    Kang Shuai
    He Juan
    Xu Ning
    Chen Chang-Yong
    COMMUNICATIONS IN THEORETICAL PHYSICS, 2014, 62 (06) : 881 - 887
  • [27] Polarizabilities as probes for P, T, and PT violation
    Lahs, Sebastian
    Comparat, Daniel
    NEW JOURNAL OF PHYSICS, 2024, 26 (12):
  • [28] Polarizabilities and Hyperpolarizabilities for Lithium Atoms in Debye Plasmas
    康帅
    贺娟
    许宁
    陈昌永
    Communications in Theoretical Physics, 2014, 62 (12) : 881 - 887
  • [29] Anisotropic polarizabilities and hyperpolarizabilities of second-period cations
    Thakkar, AJ
    Das, AK
    JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM, 2001, 547 : 233 - 238
  • [30] Nonrelativistic quantum electrodynamic approach to polarizabilities of light atoms
    Mei, Xue-Song
    Zhou, Wan-Ping
    Qiao, Hao-Xue
    JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS, 2019, 52 (22)