首页> 外文期刊>Journal of physical chemistry letters >Quantum Mechanical Calculations of Vibrational Sum-Frequency-Generation (SFG) Spectra of Cellulose: Dependence of the CH and OH Peak Intensity on the Polarity of Cellulose Chains within the SFG Coherence Domain
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Quantum Mechanical Calculations of Vibrational Sum-Frequency-Generation (SFG) Spectra of Cellulose: Dependence of the CH and OH Peak Intensity on the Polarity of Cellulose Chains within the SFG Coherence Domain

机译:纤维素振动和频生成(SFG)光谱的量子力学计算:CH和OH峰强度对SFG相干域内纤维素链极性的依赖性

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摘要

Vibrational sum-frequency-generation (SFG) spectroscopy is capable of selectively detecting crystalline biopolymers interspersed in amorphous polymer matrices. However, the ViS spectral interpretation is difficult due to the lack of knowledge on how spatial arrangements of crystalline segments influence SFG IR spectra features. Here we report time-dependent density functional theory (TD-DFT) calculations of cellulose crystallites in intimate contact with two different polarities: parallel versus antiparallel. TD-DFT calculations reveal that the CH/OH intensity ratio is very sensitive to the polarity of the crystallite packing. Theoretical calculations of hyperpolarizability tensors (beta(abc)) clearly show the dependence of SFG intensities on the polarity of crystallite packing within the SFG coherence length, which provides the basis for interpretation of the empirically observed SFG features of native cellulose in biological systems.
机译:振动和频率产生(SFG)光谱能力能够选择性地检测在非晶聚合物基质中遍布的结晶生物聚合物。 然而,由于缺乏关于结晶段的空间布置如何影响SFG IR光谱特征的知识而难以难以困难。 在这里,我们报告时间依赖性密度泛函理论(TD-DFT)计算纤维素微晶与两种不同极性的紧密接触中的纤维素微晶:平行与反平行相比。 TD-DFT计算揭示了CH / OH强度比对微晶包装的极性非常敏感。 高分子化张量(β(ABC))的理论计算清楚地显示了SFG强度对SFG相干长度内微晶包装极性的依赖性,这为解释生物系统中的原生纤维素的凭证观察到的SFG特征提供了基础。

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