Stepwise hydration of the cyanide anion: a temperature-controlled photoelectron spectroscopy and ab initio computational study of CN-(H2O)n, n=2-5.
نویسندگان
چکیده
We report the study of microsolvated CN(-)(H(2)O)(n) (n=1-5) clusters in the gas phase using a combination of experimental and computational approaches. The hydrated cyanide clusters were produced by electrospray and their structural and energetic properties were probed using temperature-controlled photoelectron spectroscopy (PES) and ab initio electronic structure calculations. Comparison between the low temperature (LT,T=12 K) and the room-temperature (RT) spectra shows a 0.25 eV spectral blueshift in the binding energy of the n=1 cluster and a significant spectral sharpening and blueshift for n=2 and 3. The experimental results are complemented with ab initio electronic structure calculations at the MP2 and CCSD(T) levels of theory that identified several isomers on the ground state potential energy function arising from the ability of CN(-) to form hydrogen bonds with water via both the C and N ends. In all cases the N end seems to be the preferred hydration site for the water network. The excellent agreement between the low temperature measured PES spectra and the basis set- and correlation-corrected [at the CCSD(T) level of theory] calculated vertical detachment energies, viz., 3.85 versus 3.84 eV (n=0), 4.54 versus 4.54 eV (n=1), 5.20 versus 5.32 eV (n=2), 5.58 versus 5.50 eV (n=3), and 5.89 versus 5.87 eV (n=4), allow us to establish the hydration motif of cyanide. Its microsolvation pattern was found to be similar to that of the halide anions (Cl(-), Br(-), and I(-)) as well as other diatomic anions having cylindrical symmetry such as NO(-), resulting to structures in which the ion resides on the surface of a water cluster. The exception is CN(-)(H(2)O)(2), for which one water molecule is bound to either side of the anion resulting in a quasilinear structure. For the n=3 cluster the anion was found to freely "tumble" on the surface of a water trimer, since the inclusion of zero-point energy even at T=0 K stabilizes the configuration of C(3) symmetry with respect to the one having the anion tilted toward the water cluster. For n=4 this motion is more restricted since the corresponding barrier at RT is 1.2 kcal/mol. It is also possible that at RT other isomers (lying within approximately 0.6 kcal/mol above the global minima) are also populated, resulting in the further broadening of the PES spectra.
منابع مشابه
Microsolvation of the dicyanamide anion: [N(CN)(2)(-)](H(2)O)n (n = 0-12).
Photoelectron spectroscopy is combined with ab initio calculations to study the microsolvation of the dicyanamide anion, N(CN)(2)(-). Photoelectron spectra of [N(CN)(2)(-)](H2O)n (n = 0-12) have been measured at room temperature and also at low temperature for n = 0-4. Vibrationally resolved photoelectron spectra are obtained for N(CN)(2)(-), allowing the electron affinity of the N(CN)2 radical...
متن کاملInitial hydration processes of magnesium chloride: size-selected anion photoelectron spectroscopy and ab initio calculations.
To understand the initial hydration processes of MgCl2, we measured photoelectron spectra of MgCl2(H2O)n- (n = 0-6) and conducted ab initio calculations on MgCl2(H2O)n- and their neutral counterparts up to n = 7. A dramatic drop in the vertical detachment energy (VDE) was observed upon addition of the first water molecule to bare MgCl2-. This large variation in VDE can be associated with the ch...
متن کاملMicroscopic solvation of NaBO2 in water: anion photoelectron spectroscopy and ab initio calculationsw
We investigated the microscopic solvation of NaBO2 in water by conducting photoelectron spectroscopy and ab initio studies on NaBO2 (H2O)n (n = 0–4) clusters. The vertical detachment energy (VDE) of NaBO2 is estimated to be 1.00 0.08 eV. The photoelectron spectra of NaBO2 (H2O)1 and NaBO2 (H2O)2 are similar to that of bare NaBO2 , except that their VDEs shift to higher electron binding energies...
متن کاملAB Initio Calculations of NMR Spectra for H20114C9N4 As A New Nanosemiconductor Molecule
BCN compounds have been researched theoretically and experimentally widely. In this paper, weintroduce the theoretical prediction of ternary B-C-N compounds. NMR spectroscopy was employedextensively to study these ternary nanostructures. We discuss the utilization of chemical shiftinformation as well as ab initio calculations of nuclear shielding for H20134C9N4 structuredetermination. We calcul...
متن کاملMicrosolvation of LiBO2 in water: anion photoelectron spectroscopy and ab initio calculations.
The microsolvation of LiBO2 in water was investigated by conducting anion photoelectron spectroscopy and ab initio studies on the LiBO2(H2O)n(-) (n = 0-5) clusters. By comparing calculations with experiments, the structures of these clusters and their corresponding neutrals were assigned, and their structural evolutions were revealed. During the anionic structural evolution with n increasing to...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- The Journal of chemical physics
دوره 132 12 شماره
صفحات -
تاریخ انتشار 2010