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用于研究磷酸解离以了解体液中磷酸根离子动力学的氢谱、磷谱、拉曼光谱和傅里叶变换红外光谱。

H, P NMR, Raman and FTIR spectroscopies for investigating phosphoric acid dissociation to understand phosphate ion kinetics in body fluids.

作者信息

Ababneh Riad, Telfah Ahmad, Al Bataineh Qais M, Tolstik Elen, Dierks Johann, Hergenröder Roland

机构信息

Department of Physics, Yarmouk University (YU), Irbid 21163, Jordan.

Department of Physics, Yarmouk University (YU), Irbid 21163, Jordan; Nanotechnology Center, The University of Jordan, 11942 Amman, Jordan; Department of Physics, University of Nebraska at Omaha, Omaha, NE 68182, USA.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2024 Feb 15;307:123594. doi: 10.1016/j.saa.2023.123594. Epub 2023 Nov 2.

Abstract

The study investigates the formation and transportation of ionic charge carriers in phosphoric acid-water system. This investigation encompasses an analysis of H and P NMR chemical shifts, self-diffusion coefficients, spin-lattice relaxation rates, spin-spin relaxation rates, activation energies, dissociation constants, electrical conductivity, and Raman shifts, along with FTIR spectra across various water concentrations. Significantly, the maxima observed in these curves at around 0.8 water molar fraction predominantly from the unique molecular arrangement between phosphoric acid and water molecules, influenced by a hydrogen bonding network. These findings yield valuable insights into phosphate ion kinetics within body fluids, covering essential aspects like hydrogen bonding networks, ionization processes, and the energy kinetics of phosphoric dissociation. A customized semiempirical model is applied to calculate dissociated species (water, phosphoric acid, and hydronium ion) at different water contents within a wide range of water mole fraction. Furthermore, this investigation extends to the dissociation of phosphoric acid in DMEM cell culture media, offering a more precise model for phosphate ionic kinetics within body fluids, especially at nominal phosphate concentrations of approximately 1:700μL.

摘要

该研究调查了磷酸 - 水体系中离子电荷载体的形成与传输。这项研究涵盖了对氢和磷的核磁共振化学位移、自扩散系数、自旋 - 晶格弛豫率、自旋 - 自旋弛豫率、活化能、解离常数、电导率以及拉曼位移的分析,同时还包括了不同水浓度下的傅里叶变换红外光谱。值得注意的是,在约0.8水摩尔分数处这些曲线中观察到的最大值主要源于磷酸与水分子之间独特的分子排列,这受到氢键网络的影响。这些发现为体液中的磷酸根离子动力学提供了有价值的见解,涵盖了诸如氢键网络、电离过程以及磷酸解离的能量动力学等重要方面。应用定制的半经验模型来计算在宽范围水摩尔分数内不同水含量下的解离物种(水、磷酸和水合氢离子)。此外,这项研究扩展到了磷酸在DMEM细胞培养基中的解离,为体液中的磷酸离子动力学提供了更精确的模型,特别是在标称磷酸浓度约为1:700μL时。

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