首页> 外文期刊>The Journal of Chemical Physics >Molecular mechanism of charge inversion revealed by polar orientation of interfacial water molecules: A heterodyne-detected vibrational sum frequency generation study
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Molecular mechanism of charge inversion revealed by polar orientation of interfacial water molecules: A heterodyne-detected vibrational sum frequency generation study

机译:界面水分子极性取向揭示的电荷反演的分子机制:异致检测到的振动和频率产生研究

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"Charge inversion" is a phenomenon in which multivalent counterions overcompensate for interfacial charges and invert the sign of the net charge near a surface. This phenomenon is believed to be relevant to biologically important processes such as DNA condensation, and hence it has attracted much attention. We investigated the polar orientation of interfacial water molecules at two different negatively charged interfaces in the absence and presence of La3+ using heterodyne-detected vibrational sum frequency generation spectroscopy, which can directly determine the up/down orientation of interfacial molecules. It was found that the orientations of water molecules at a bio-relevant phospholipid interface change from the hydrogen-up to the hydrogen-down with the addition of 10 mu M La3+. This change of water orientation indicates that the net charge at the phospholipid interface is inverted by adsorption of La3+ to the phosphate headgroup. By contrast, at an alkylsulfate interface, the majority of the interfacial water molecules remain hydrogen-up orientated even in the presence of 25 mM La3+, indicating that the sulfate headgroup is still solvated by up-oriented water. The observed headgroup specificity suggests that charge inversion at the phospholipid interface originates primarily from the chemical interaction between the phosphate and La3+ ion. Published by AIP Publishing.
机译:“充电反转”是一种现象,其中多价抵抗过度适用于界面电荷,并在表面附近反转净电荷的标志。这种现象被认为与生物学上重要的方法如DNA凝聚,因此它引起了很多关注。我们在使用外差检测的振动和频率产生光谱中,在La3 +的不存在和存在下,在两个不同的带负电荷界面处研究了界面水分子的极性取向,这可以直接确定界面分子的上/下取向。结果发现,在生物相关的磷脂界面处的水分子的取向随加氢到氢气下降,加入10μm10μl3+。这种水取向的变化表明磷脂界面的净电荷通过吸附La3 +至磷酸盐头组而反转。相比之下,在烷基硫酸盐界面中,即使在25mM La 3 +存在下,大部分界面水分子也保持氢化,表明硫酸盐头组仍然溶于上向水。观察到的头组特异性表明,磷脂界面的电荷反转主要来自磷酸盐和La3 +离子之间的化学相互作用。通过AIP发布发布。

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