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通过啁啾脉冲傅里叶变换微波光谱学观察到 (HCl)2H2O 团簇的结构和性质。

Structure and properties of the (HCl)2H2O cluster observed by chirped-pulse Fourier transform microwave spectroscopy.

机构信息

Institute of Physics, Polish Academy of Sciences, Al. Lotników 32/46, 02-668 Warszawa, Poland.

出版信息

Phys Chem Chem Phys. 2011 Aug 21;13(31):13912-9. doi: 10.1039/c1cp20841a. Epub 2011 Jul 8.

DOI:10.1039/c1cp20841a
PMID:21743896
Abstract

The rotational spectrum of the cyclic (HCl)(2)H(2)O cluster has been identified for the first time in the chirped pulse, Fourier transform microwave spectrum of a supersonically expanded HCl/H(2)O/Ar mixture. The spectrum was measured at frequencies 6-18.5 GHz, and transitions in two inversion-tunneling states, at close to 1 : 3 relative intensity, have been assigned for the parent species. The two single (37)Cl isotopic species, and the double (37)Cl species have been assigned in the natural abundance sample, and the (18)O and HDO species of the cluster were identified in isotopically enriched samples. The rich nuclear quadrupole hyperfine structure due to the presence of two chlorine nuclei has been satisfactorily fitted and provided useful information on the nonlinearity of intermolecular bonds in the cluster. The r(s) heavy atom geometry of the cluster was determined and the strongest bond in the intermolecular cycle r(O···HCl) = 3.126(3) Å, is found to be intermediate in length between the values in H(2)O···HCl and (H(2)O)(2)HCl. The fitted spectroscopic constants and derived molecular properties are compared with ab initio predictions, and a discussion of complexation effects in these three clusters is made.

摘要

首次在超声速膨胀的 HCl/H(2)O/Ar 混合物的啁啾脉冲傅里叶变换微波光谱中识别出环状 (HCl)(2)H(2)O 团簇的旋转光谱。该光谱在 6-18.5GHz 的频率下进行了测量,并且在接近 1:3 的相对强度的两个反转隧道态的跃迁已被分配给母体物质。在天然丰度样品中分配了两种单 (37)Cl 同位素物质和双 (37)Cl 物质,在同位素富集样品中鉴定了该团簇的 (18)O 和 HDO 物质。由于存在两个氯核,丰富的核四极超精细结构已得到令人满意的拟合,并为团簇中分子间键的非线性提供了有用的信息。确定了团簇的重原子 r(s)几何形状,发现分子间环中最强的键 r(O···HCl)=3.126(3)Å,其长度介于 H(2)O···HCl 和 (H(2)O)(2)HCl 之间。比较了拟合的光谱常数和得出的分子性质与从头计算预测值,并对这三个团簇中的络合效应进行了讨论。

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