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Simultaneous neutron reflectometry and infrared reflection absorption spectroscopy (IRRAS) study of mixed monolayer reactions at the air–water interface

机译:同时中子反射法和红外反射吸收光谱法(IRRAS)研究空气-水界面处的混合单层反应

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摘要

The simultaneous application of neutron reflectometry (NR) and infrared reflection absorption spectroscopy (IRRAS) to the study of the oxidation kinetics of organic monolayers at the air–water interface is described for the first time. This advance was possible thanks to the development of a new sample environment that includes a gas-delivery system and is compatible with in situ application of the two techniques within the constraints of short-term neutron beam-line access. We studied the oxidation of monolayers of the mono-molecular film palmitoleic acid and of a binary mixture of oleic (OA) and stearic (SA) acids by gas-phase ozone. We contrast the two highly complementary techniques and demonstrate that IRRAS provides key additional insight into the alignment of surfactant molecules at the air–water interface. We highlight the potential of the more economical and widely available IRRAS technique to complement NR studies. We also found an apparent increase of the NR signal upon oxidation of a mixed SA/OA monolayer, as well as evidence of slow intensity fluctuations of the SA- generated IRRAS signal. We demonstrate how simultaneous NR-IRRAS substantially enhances future studies of increasingly complex surfactant mixtures and their atmospheric surface reactions.
机译:首次描述了中子反射法(NR)和红外反射吸收光谱(IRRAS)在空气-水界面处有机单层氧化动力学研究的同时应用。由于开发了一个新的样品环境,其中包括气体输送系统,并且在短期中子束流线访问的限制下与两种技术的原位应用兼容,因此可以实现这一进步。我们研究了单分子膜棕榈油酸和油酸(OA)和硬脂酸(SA)酸的二元混合物被气相臭氧氧化的单层。我们对比了这两种高度互补的技术,并证明了IRRAS提供了关于表面活性剂分子在空气-水界面处对齐的关键信息。我们强调了更经济,更广泛使用的IRRAS技术补充NR研究的潜力。我们还发现混合SA / OA单层氧化后NR信号明显增加,以及SA产生的IRRAS信号强度缓慢波动的证据。我们演示了同时进行NR-IRRAS如何大大增强对日益复杂的表面活性剂混合物及其大气表面反应的未来研究。

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