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强氢键导致的振动光谱中的耦合:7-氮杂吲哚-乙酸异二聚体的连续二维红外光谱研究

Couplings Across the Vibrational Spectrum Caused by Strong Hydrogen Bonds: A Continuum 2D IR Study of the 7-Azaindole-Acetic Acid Heterodimer.

作者信息

Stingel Ashley M, Petersen Poul B

机构信息

Department of Chemistry and Chemical Biology, Cornell University , Ithaca, New York 14853, United States.

出版信息

J Phys Chem B. 2016 Oct 20;120(41):10768-10779. doi: 10.1021/acs.jpcb.6b05049. Epub 2016 Oct 11.

Abstract

Strongly hydrogen-bonded motifs provide structural stability and can act as proton transfer relays to drive chemical processes in biological and chemical systems. However, structures with medium and strong hydrogen bonds are difficult to study due to their characteristically broad vibrational bands and large anharmonicity. This is further complicated by strong interactions between the high-frequency hydrogen-bonded vibrational modes, fingerprint modes, and low-frequency intradimer modes that modulate the hydrogen-bonding. Understanding these structures and their associated dynamics requires studying much of the vibrational spectrum. Here, mid-IR continuum spectroscopy of the cyclic 7-azaindole-acetic acid (7AI-AcOH) heterodimer reveals the vibrational relaxation dynamics and couplings of this complex hydrogen-bonded system. Within this dimer, the NH bond of 7AI exhibits a band at 3250 cm caused by a medium strength hydrogen bond, while the strongly hydrogen-bonded OH modes of acetic acid exhibit a broad double-peaked vibrational feature spanning 1750 to 2750 cm. Transient IR and 2D IR experiments were performed using three excitation frequencies, centered on the high-frequency OH and NH modes, and probed with a mid-IR continuum to measure the spectral response from 1000 to 3500 cm. While the NH stretch is observed to relax in 300 fs, the strongly hydrogen-bonded OH modes relax within the time resolution of the experiment (sub-100 fs). The difference in the strength of the hydrogen bonds is also reflected in the coupling pattern in the fingerprint region observed with 2D IR spectroscopy. Here the NH is strongly coupled to fingerprint modes involving the 7AI monomer, while the OH vibrations are strongly coupled to vibrational modes across the entire dimer. Together, the results show strong coupling and rapid energy transfer across the hydrogen-bonded interface and through the structure of the 7-azaindole-acetic acid heterodimer, highlighting the need to study the full vibrational spectrum for strongly hydrogen-bonded systems.

摘要

强氢键基序提供结构稳定性,并可作为质子转移中继来驱动生物和化学系统中的化学过程。然而,具有中等强度和强氢键的结构由于其特征性的宽振动带和大的非谐性而难以研究。高频氢键振动模式、指纹模式和调节氢键的低频二聚体内模式之间的强相互作用使这一情况更加复杂。理解这些结构及其相关动力学需要研究大部分振动光谱。在此,环状7-氮杂吲哚-乙酸(7AI-AcOH)异二聚体的中红外连续光谱揭示了这种复杂氢键系统的振动弛豫动力学和耦合。在该二聚体内,7AI的NH键由于中等强度的氢键而在3250 cm处呈现一个谱带,而乙酸的强氢键OH模式呈现出一个跨越1750至2750 cm的宽双峰振动特征。使用三个以高频OH和NH模式为中心的激发频率进行了瞬态红外和二维红外实验,并用中红外连续光谱进行探测,以测量1000至3500 cm的光谱响应。虽然观察到NH伸缩振动在300 fs内弛豫,但强氢键OH模式在实验的时间分辨率(低于100 fs)内弛豫。氢键强度的差异也反映在二维红外光谱观察到的指纹区耦合模式中。在此,NH与涉及7AI单体的指纹模式强烈耦合,而OH振动与整个二聚体的振动模式强烈耦合。总之,结果表明在7-氮杂吲哚-乙酸异二聚体的氢键界面和结构中存在强耦合和快速能量转移,突出了研究强氢键系统完整振动光谱的必要性。

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