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IR signature of the photoionization-induced hydrophobic - hydrophilic site switching in phenol-Ar-n clusters

机译:苯酚-Ar-n团簇中光电离诱导的疏水->亲水位点转换的红外特征

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IR spectra of phenol-Ar-n (PhOH-Ar-n) clusters with n=1 and 2 were measured in the neutral and cationic electronic ground states in order to determine the preferential intermolecular ligand binding motifs, hydrogen bonding (hydrophilic interaction) versus pi bonding (hydrophobic interaction). Analysis of the vibrational frequencies of the OH stretching motion, nu(OH), observed in nanosecond IR spectra demonstrates that neutral PhOH-Ar and PhOH-Ar-2 as well as cationic PhOH+-Ar have a pi-bound structure, in which the Ar atoms bind to the aromatic ring. In contrast, the PhOH+-Ar-2 cluster cation is concluded to have a H-bound structure, in which one Ar atom is hydrogen-bonded to the OH group. This pi -> H binding site switching induced by ionization was directly monitored in real time by picosecond time-resolved IR spectroscopy. The pi-bound nu(OH) band is observed just after the ionization and disappears simultaneously with the appearance of the H-bound nu(OH) band. The analysis of the picosecond IR spectra demonstrates that (i) the pi -> H site switching is an elementary reaction with a time constant of similar to 7 ps, which is roughly independent of the available internal vibrational energy, (ii) the barrier for the isomerization reaction is rather low(< 100 cm(-1)), (iii) both the position and the width of the H-bound nu(OH) band change with the delay time, and the time evolution of these spectral changes can be rationalized by intracluster vibrational energy redistribution occurring after the site switching. The observation of the ionization-induced switch from pi bonding to H bonding in the PhOH+-Ar-2 cation corresponds to the first manifestation of an intermolecular isomerization reaction in a charged aggregate. (c) 2007 American Institute of Physics.
机译:在中性和阳离子电子基态下测量n = 1和2的酚-Ar-n(PhOH-Ar-n)团簇的红外光谱,以确定分子间优先的分子间配体结合基序,氢键(亲水相互作用)与π键(疏水相互作用)。在纳秒红外光谱中观察到的OH拉伸运动的振动频率nu(OH)的分析表明,中性PhOH-Ar和PhOH-Ar-2以及阳离子PhOH + -Ar具有pi结合结构,其中Ar原子与芳环结合。相比之下,PhOH + -Ar-2簇阳离子被认为具有H键结构,其中一个Ar原子氢键合到OH基上。通过皮秒时间分辨红外光谱直接实时监测由电离引起的π→H结合位点转换。在电离后立即观察到pi结合的nu(OH)谱带,并与H结合的nu(OH)谱带同时消失。皮秒红外光谱分析表明(i)pi-> H位置转换是一个基本反应,其时间常数近似于7 ps,这基本上与可用的内部振动能量无关,(ii)势垒异构化反应相当低(<100 cm(-1)),(iii)H束缚nu(OH)谱带的位置和宽度都随延迟时间而变化,并且这些光谱变化的时间演化可以通过切换站点后发生的集群内振动能量重新分配来合理化。在PhOH + -Ar-2阳离子中,电离诱导的从pi键转换为H键的现象对应于带电聚集体中分子间异构化反应的第一个表现。 (c)2007年美国物理研究所。

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