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通过实时自由能计算和原位电化学阻抗谱研究甘氨酸在水中对二氧化钛的吸附

Adsorption of Glycine on TiO in Water from On-the-fly Free-Energy Calculations and In Situ Electrochemical Impedance Spectroscopy.

作者信息

Agosta Lorenzo, Fiore Luca, Colozza Noemi, Pérez-Ropero Guillermo, Lyubartsev Alexander, Arduini Fabiana, Hermansson Kersti

机构信息

Department of Chemistry-Ångström Laboratory, Uppsala University, Uppsala 751 21, Sweden.

Department of Science and Chemical Technologies, University of Rome Tor Vergata, Via della Ricerca Scientifica, Rome 00133, Italy.

出版信息

Langmuir. 2024 Jun 11;40(23):12009-12016. doi: 10.1021/acs.langmuir.4c00604. Epub 2024 May 21.

Abstract

We report here an experimental-computational study of hydrated TiO anatase nanoparticles interacting with glycine, where we obtain quantitative agreement of the measured adsorption free energies. Ab initio simulations are performed within the tight binding and density functional theory in combination with enhanced free-energy sampling techniques, which exploit the thermodynamic integration of the unbiased mean forces collected on-the-fly along the molecular dynamics trajectories. The experiments adopt a new and efficient setup for electrochemical impedance spectroscopy measurements based on portable screen-printed gold electrodes, which allows fast and in situ signal assessment. The measured adsorption free energy is -30 kJ/mol (both from experiment and calculation), with preferential interaction of the charged NH group which strongly adsorbs on the TiO bridging oxygens. This highlights the importance of the terminal amino groups in the adsorption mechanism of amino acids on hydrated metal oxides. The excellent agreement between computation and experiment for this amino acid opens the doors to the exploration of the interaction free energies for other moderately complex bionano systems.

摘要

我们在此报告一项关于水合TiO锐钛矿纳米颗粒与甘氨酸相互作用的实验-计算研究,在此研究中我们获得了测量的吸附自由能的定量一致性。采用紧束缚和密度泛函理论结合增强自由能采样技术进行从头算模拟,该技术利用沿分子动力学轨迹实时收集的无偏平均力的热力学积分。实验采用了一种基于便携式丝网印刷金电极的新型高效电化学阻抗谱测量装置,可实现快速原位信号评估。测量的吸附自由能为-30 kJ/mol(实验和计算结果均如此),带电荷的NH基团优先相互作用,强烈吸附在TiO桥氧上。这突出了末端氨基在氨基酸在水合金属氧化物上吸附机制中的重要性。该氨基酸的计算结果与实验结果之间的出色一致性为探索其他中等复杂生物纳米系统的相互作用自由能打开了大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3e3/11171457/da5e6f86b6aa/la4c00604_0001.jpg

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