Max Planck Institute for Polymer Research , Ackermannweg 10 , 55128 Mainz , Germany.
Graduate School Materials Science in Mainz , Staudingerweg 9 , 55128 Mainz , Germany.
J Phys Chem B. 2019 Feb 7;123(5):1085-1089. doi: 10.1021/acs.jpcb.8b12297. Epub 2019 Jan 23.
The carbonyl groups of glycerolipid monolayers on water play an important role in the formation of the interfacial hydrogen bond network, which in turn influences the interactions of lipids with, for example, metabolites. As the frequency of the carbonyl absorption band strongly depends on the hydration state of the lipid headgroups, the carbonyl band is a sensitive reporter of changes in the headgroup environment. Here, we use phase-resolved sum frequency generation spectroscopy to obtain information about the orientation and hydration of the carbonyl groups in lipid monolayers. We find that there are two distinct carbonyl moieties in the lipid monolayers, oppositely oriented relative to the surface plane, that experience substantially different hydrogen-bonding environments.
甘油磷脂单层在水面上的羰基基团在形成界面氢键网络中起着重要作用,而氢键网络反过来又会影响脂质与例如代谢物的相互作用。由于羰基吸收带的频率强烈依赖于脂质头部基团的水合状态,因此羰基带是头部基团环境变化的敏感示踪剂。在这里,我们使用相分辨和频产生光谱学来获得关于脂质单层中羰基基团的取向和水合状态的信息。我们发现,脂质单层中有两个截然不同的羰基部分,它们相对于表面平面相对取向,并且经历了截然不同的氢键环境。