Electronic and vibrational spectra of protonated benzaldehyde-water clusters, [BZ-(H2O)n≤5]H+: evidence for ground-state proton transfer to solvent for n ≥ 3.
نویسندگان
چکیده
Vibrational and electronic photodissociation spectra of mass-selected protonated benzaldehyde-(water)n clusters, [BZ-(H2O)n]H(+) with n ≤ 5, are analyzed by quantum chemical calculations to determine the protonation site in the ground electronic state (S0) and ππ(*) excited state (S1) as a function of microhydration. IR spectra of [BZ-(H2O)n]H(+) with n ≤ 2 are consistent with BZH(+)-(H2O)n type structures, in which the excess proton is localized on benzaldehyde. IR spectra of clusters with n ≥ 3 are assigned to structures, in which the excess proton is located on the (H2O)n solvent moiety, BZ-(H2O)nH(+). Quantum chemical calculations at the B3LYP, MP2, and ri-CC2 levels support the conclusion of proton transfer from BZH(+) to the solvent moiety in the S0 state for hydration sizes larger than the critical value nc = 3. The vibronic spectrum of the S1 ← S0 transition (ππ(*)) of the n = 1 cluster is consistent with a cis-BZH(+)-H2O structure in both electronic states. The large blueshift of the S1 origin by 2106 cm(-1) upon hydration with a single H2O ligand indicates that the proton affinity of BZ is substantially increased upon S1 excitation, thus strongly destabilizing the hydrogen bond to the solvent. The adiabatic S1 excitation energy and vibronic structure calculated at the ri-CC2/aug-cc-pVDZ level agrees well with the measured spectrum, supporting the notion of a cis-BZH(+)-H2O geometry. The doubly hydrated species, cis-BZH(+)-(H2O)2, does not absorb in the spectral range of 23 000-27 400 cm(-1), because of the additional large blueshift of the ππ(*) transition upon attachment of the second H2O molecule. Calculations predict roughly linear and large incremental blueshifts for the ππ(*) transition in [BZ-(H2O)n]H(+) as a function of n. In the size range n ≥ 3, the calculations predict a proton transfer from the (H2O)nH(+) solvent back to the BZ solute upon electronic ππ(*) excitation.
منابع مشابه
Microsolvation of the Water Cation in Argon: II. Infrared Photodissociation Spectra of H2O-Arn (n ) 1-14)
Mid-infrared photodissociation spectra of H2O-Arn (n ) 1-14) complexes have been recorded in the vicinity of the OsH stretch vibrations of the water cation. The rovibrational structure of the transitions in the dimer spectrum (n ) 1) are consistent with a planar, proton (H)-bound HsOsHsAr equilibrium geometry. The slightly translinear intermolecular bond in the ground vibrational state is chara...
متن کاملCharge penetration and the origin of large O-H vibrational red-shifts in hydrated-electron clusters, (H2O)n-.
The origin of O-H vibrational red-shifts observed experimentally in (H2O)n(-) clusters is analyzed using electronic structure calculations, including natural bond orbital analysis. The red-shifts are shown to arise from significant charge transfer and strong donor-acceptor stabilization between the unpaired electron and O-H sigma* orbitals on a nearby water molecule in a double hydrogen-bond-ac...
متن کاملElectronic spectroscopy and photodissociation dynamics of Co 2 1 – methanol clusters : Co 2 1 ( CH 3 OH ) n ( n = 4 – 7 )
Solvated cluster ions Co(CH3OH)n (n 1⁄4 4–7) have been produced by electrospray and studied using photofragment spectroscopy. There are notable differences between the photodissociation spectra of these complexes and the analogous water complexes. Co(CH3OH)6 absorbs significantly more strongly than Co(H2O)6. The photodissociation spectra of Co (CH3OH)n (n 1⁄4 4, 5 and 6) are very similar, which...
متن کاملElectronic relaxation dynamics in large anionic water clusters : „ H 2 O ... n − and „ D 2 O ... n − „ n = 25 – 200 ... Graham
Electronic relaxation dynamics subsequent to s→p excitation of the excess electron in large anionic water clusters, H2O n − and D2O n − with 25 n 200, were investigated using time-resolved photoelectron imaging. Experimental improvements have enabled considerably larger clusters to be probed than in previous work, and the temporal resolution of the instrument has been improved. New trends are s...
متن کاملMicrosolvation of Co2+ and Ni2+ by acetonitrile and water: photodissociation dynamics of M(2+)(CH3CN)n(H2O)m.
The microsolvation of cobalt and nickel dications by acetonitrile and water is studied by measuring photofragment spectra at 355, 532 and 560-660 nm. Ions are produced by electrospray, thermalized in an ion trap and mass selected by time of flight. The photodissociation yield, products and their branching ratios depend on the metal, cluster size and composition. Proton transfer is only observed...
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 140 12 شماره
صفحات -
تاریخ انتشار 2014