Differential Hydration of Tricyanomethanide Observed by Time Resolved Vibrational Spectroscopy
Overview
Affiliations
The degenerate transition corresponding to asymmetric stretches of the D(3h) tricyanomethanide anion, C(CN)(3)(-), in aqueous solution was investigated by linear FTIR spectroscopy, femtosecond pump–probe spectroscopy, and 2D IR spectroscopy. Time resolved vibrational spectroscopy shows that water induces vibrational energy transfer between the degenerate asymmetric stretch modes of tricyanomethanide. The frequency–frequency correlation function and the vibrational energy transfer show two significantly different ultrafast time scales. The system is modeled with molecular dynamics simulations and ab initio calculations. A new model for theoretically describing the vibrational dynamics of a degenerate transition is presented. Microscopic models, where water interacts axially and radially with the ion, are suggested for the transition dipole reorientation mechanism.
Nachaki E, Kuroda D J Phys Chem B. 2024; 128(14):3408-3415.
PMID: 38546442 PMC: 11017243. DOI: 10.1021/acs.jpcb.3c06872.
Chuntonov L, Kumar R, Kuroda D Phys Chem Chem Phys. 2014; 16(26):13172-81.
PMID: 24871901 PMC: 4130209. DOI: 10.1039/c4cp00643g.
Vibrational dynamics of a non-degenerate ultrafast rotor: the (C12,C13)-oxalate ion.
Kuroda D, Abdo M, Chuntonov L, Smith 3rd A, Hochstrasser R J Chem Phys. 2013; 139(16):164514.
PMID: 24182056 PMC: 3829914. DOI: 10.1063/1.4826137.
Quantum process tomography quantifies coherence transfer dynamics in vibrational exciton.
Chuntonov L, Ma J J Phys Chem B. 2013; 117(43):13631-8.
PMID: 24079417 PMC: 3941204. DOI: 10.1021/jp4075493.
Quantum Beats and Coherence Decay in Degenerate States Split by Solvation.
Chuntonov L, Kuroda D, Ghosh A, Ma J, Hochstrasser R J Phys Chem Lett. 2013; 4(11):1866-1871.
PMID: 23956817 PMC: 3743118. DOI: 10.1021/jz400826a.