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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Application of standard DFT theory for nonbonded interactions in soft matter: Prototype study of poly-para-phenylene
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Application of standard DFT theory for nonbonded interactions in soft matter: Prototype study of poly-para-phenylene

机译:标准DFT理论在软物质中非键相互作用的应用:聚对亚苯基的原型研究

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We present a detailed analysis of the application of density functional theory (DFT) methods to the study of structural properties of molecular and supramolecular systems, using as a paradigmatic example three para-phenylene-based systems: isolated biphenyl, single chain poly-para-phenylene, and crystalline biphenyl. We use different functionals for the exchange correlation potential, the local density (LDA), and generalized gradient approximations (GGA), and also different basis sets expansions, localized, plane waves (PW), and mixed (localized plus PW), within the reciprocal space formulation for the hamiltonian. We find that regardless of the choice of basis functions, the GGA calculations yield larger interring distances and torsion angles than LDA. For the same XC approximation, the agreement between calculations with different basis functions lies within 1% (LDA) or 0.5% (GGA) for distances, and while PW and mixed basis calculations agree within 1 degrees for torsion angles, the localized basis results show larger angles by similar or equal to 8 degrees and a nonmonotonic dependence on basis size, with differences within 6 degrees. The most prominent features, namely the torsion between rings for isolated molecule and infinite chain, and planarity for the molecule in crystalline environment, are well reproduced by all DFT calculations. (c) 2005 Wiley Periodicals, Inc.
机译:我们以三种基于对亚苯基的系统为例,对密度泛函理论(DFT)方法在研究分子和超分子系统的结构特性中的应用进行了详细的分析:分离的联苯,单链多对-亚苯基和结晶联苯。我们将不同的函数用于交换相关势,局部密度(LDA)和广义梯度逼近(GGA),以及不同的基集展开,局部,平面波(PW)和混合(局部加PW)。哈密​​尔顿量的倒数空间公式。我们发现,无论选择什么基函数,GGA计算都比LDA产生更大的环行距离和扭转角。对于相同的XC近似值,对于距离,具有不同基础函数的计算之间的一致性在1%(LDA)或0.5%(GGA)之内,而对于扭转角,PW和混合基础计算的一致性在1度之内,局部基础结果表明较大的角度相近或等于8度,并且对基础尺寸具有非单调依赖性,相差在6度以内。所有DFT计算都很好地再现了最突出的特征,即分离的分子和无限链的环之间的扭转以及在结晶环境中分子的平面性。 (c)2005年Wiley Periodicals,Inc.

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