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首页> 外文期刊>Journal of physical chemistry letters >Elucidation of Chiral Symmetry Breaking in a Racemic Polymer System with Terahertz Vibrational Spectroscopy and Crystal Orbital Density Functional Theory
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Elucidation of Chiral Symmetry Breaking in a Racemic Polymer System with Terahertz Vibrational Spectroscopy and Crystal Orbital Density Functional Theory

机译:用太赫兹振动光谱和晶体轨道密度泛函理论阐明外消旋聚合物体系中的手性对称性断裂

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The conservation of chiral symmetry has been used as a fundamental rule to determine polymer packing conformations in racemic systems. We have illustrated, through the interplay of polarization terahertz (THz) spectroscopy and solid-state density functional theory, that the chiral symmetry is not conserved in a poly(lactic acid) stereocomplex (scPLA) system. Poly(L-lactic acid) (PLLA) displays a weaker violation of the 3, screw symmetry than poly(D-lactic acid) (PDLA) and possesses a stronger intramolecular vibrational energy, on average, in the low-frequency gamma-point phonon modes than does PDLA. Polarization THz spectroscopy adds a new dimension to polymer crystallography through which new phenomena are expected to be revealed.
机译:手性对称性的守恒已被用作确定外消旋体系中聚合物堆积构象的基本规则。通过极化太赫兹(THz)光谱和固态密度泛函理论的相互作用,我们已经说明了在聚乳酸立体复合物(scPLA)系统中不守恒手性对称性。聚(L-乳酸)(PLLA)与聚(D-乳酸)(PDLA)相比,违反3,螺旋对称性较弱,并且平均而言,在低频伽玛点上具有更强的分子内振动能声子模式比PDLA多。极化太赫兹光谱学为聚合物晶体学增加了新的领域,有望通过它揭示新的现象。

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