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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Simulations of Infrared Spectra of Nanoconfined Liquids: Acetonitrile Confined in Nanoscale, Hydrophilic Silica Pores
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Simulations of Infrared Spectra of Nanoconfined Liquids: Acetonitrile Confined in Nanoscale, Hydrophilic Silica Pores

机译:纳米受限液体的红外光谱模拟:乙腈被限制在纳米级亲水性硅胶孔中

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摘要

The infrared spectrum of acetonitrile confined in hydrophilic silica pores roughly cylindrical and 2.4 nm in diameter has been simulated using molecular dynamics. Hydrogen bonding interactions between acetonitrile and silanol groups on the pore wall involve charge transfer effects that have been incorporated through corrections based on electronic structure calculations on a dimer. The simulated spectrum of confined acetonitrile differs most prominently from that of the bulk liquid by the appearance of a blue-shifted shoulder, in agreement with previous experimental measurements. The dominant peak is little changed in position relative to the bulk liquid case, but broadened by ~40%. A detailed analysis of the structure and dynamics of the confined liquid acetonitrile is presented, and the spectral features are examined in this context. It is found that packing effects, hydrogen bonding, and electrostatic interactions all play important roles. Finally, the molecular-level information that can be obtained about the dynamics of the confined liquid from the infrared line shape is discussed.
机译:乙腈的红外光谱被限制在亲水性二氧化硅孔中,该孔大约为圆柱形,直径为2.4 nm,已使用分子动力学进行了模拟。孔壁上乙腈和硅烷醇基团之间的氢键相互作用涉及电荷转移效应,该电荷转移效应已通过基于二聚体上电子结构计算的修正进行合并。与先前的实验测量结果一致,受限的乙腈的模拟光谱与大块液体的模拟光谱最大不同之处在于其出现了蓝移的肩峰。相对于大容量液体情况,主峰的位置几乎没有变化,但扩大了约40%。提出了对密闭液体乙腈的结构和动力学的详细分析,并在此背景下检查了光谱特征。发现堆积效应,氢键和静电相互作用均起重要作用。最后,讨论了可以从红外线形获得的有关承压液体动力学的分子水平信息。

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