Microhydration of PAH+ cations: evolution of hydration network in naphthalene+-(H2O)n clusters (n ≤ 5)

被引:39
作者
Chatterjee, Kuntal [1 ]
Dopfer, Otto [1 ]
机构
[1] Tech Univ Berlin, Inst Opt & Atomare Phys, Hardenbergstr 36, D-10623 Berlin, Germany
关键词
POLYCYCLIC AROMATIC-HYDROCARBONS; MATRIX-ISOLATED NAPHTHALENE; DIFFUSE INTERSTELLAR BANDS; INFRARED-SPECTROSCOPY; GAS-PHASE; DISSOCIATION-ENERGY; SOLVATION DYNAMICS; ABSORPTION-SPECTROSCOPY; PROTONATED NAPHTHALENE; MOLECULAR-STRUCTURE;
D O I
10.1039/c7sc05124g
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The interaction of polycyclic aromatic hydrocarbon molecules with water (H2O - W) is of fundamental importance in chemistry and biology. Herein, size-selected microhydrated naphthalene cation nanoclusters, Np+-W-n (n <= 5), are characterized by infrared photodissociation (IRPD) spectroscopy in the C-H and O-H stretch range to follow the stepwise evolution of the hydration network around this prototypical PAH(+) cation. The IRPD spectra are highly sensitive to the hydration structure and are analyzed by dispersion-corrected density functional theory calculations (B3LYP-D3/aug-cc-pVTZ) to determine the predominant structural isomers. For n = 1, W forms a bifurcated CH center dot center dot center dot O ionic hydrogen bond (H-bond) to two acidic CH protons of the bicyclic ring. For n >= 2, the formation of H-bonded solvent networks dominates over interior ion solvation, because of strong cooperativity in the former case. For n >= 3, cyclic W-n solvent structures are attached to the CH protons of Np+. However, while for n = 3 the W3 ring binds in the CH center dot center dot center dot O plane to Np+, for n >= 4 the cyclic Wn clusters are additionally stabilized by stacking interactions, leading to sandwich- type configurations. No intracluster proton transfer from Np+ to the Wn solvent is observed in the studied size range (n <= 5), because of the high proton affinity of the naphthyl radical compared to Wn. This is different from microhydrated benzene(+) clusters, (Bz-W-n)(+), for which proton transfer is energetically favorable for n >= 4 due to the much lower proton affinity of the phenyl radical. Hence, because of the presence of polycyclic rings, the interaction of PAH(+) cations with W is qualitatively different from that of monocyclic Bz(+) with respect to interaction strength, structure of the hydration shell, and chemical reactivity. These differences are rationalized and quantified by quantum chemical analysis using the natural bond orbital (NBO) and noncovalent interaction (NCI) approaches.
引用
收藏
页码:2301 / 2318
页数:18
相关论文
共 129 条
[81]   Infrared spectroscopy of the benzene-H2O cluster cation:: experimental study on the drastic structural change upon photoionization [J].
Miyazaki, M ;
Fujii, A ;
Ebata, T ;
Mikami, N .
CHEMICAL PHYSICS LETTERS, 2001, 349 (5-6) :431-436
[82]  
Miyazaki M., 2018, PHYS CHEM C IN PRESS, DOI [10.1039/c1037cp06127g, DOI 10.1039/C1037CP06127G]
[83]   Single water solvation dynamics in the 4-aminobenzonitrile-water cluster cation revealed by picosecond time-resolved infrared spectroscopy [J].
Miyazaki, Mitsuhiko ;
Nakamura, Takashi ;
Wohlgemuth, Matthias ;
Mitric, Roland ;
Dopfer, Otto ;
Fujii, Masaaki .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2015, 17 (44) :29969-29977
[84]   Pulse radiolysis investigations on acidic aqueous solutions of benzene: Formation of radical cations [J].
Mohan, H ;
Mittal, JP .
JOURNAL OF PHYSICAL CHEMISTRY A, 1999, 103 (03) :379-383
[85]   Gas phase hydrogen-bonded complexes of aromatic molecules: photoionization and energetics [J].
Mons, M ;
Dimicoli, I ;
Piuzzi, F .
INTERNATIONAL REVIEWS IN PHYSICAL CHEMISTRY, 2002, 21 (01) :101-135
[86]  
Murthy S. G., 2003, ASTROPHYS J LETT, V596, pL195
[87]   Efficient photochemistry of coronene:water complexes [J].
Noble, J. A. ;
Jouvet, C. ;
Aupetit, C. ;
Moudens, A. ;
Mascetti, J. .
ASTRONOMY & ASTROPHYSICS, 2017, 599
[88]   Gas-phase infrared photodissociation spectroscopy of cationic polyaromatic hydrocarbons [J].
Oomens, J ;
van Roij, AJA ;
Meijer, G ;
von Helden, G .
ASTROPHYSICAL JOURNAL, 2000, 542 (01) :404-410
[89]   Experimental Observation and Quantum Chemical Characterization of the S1 ← S0 Transition of Protonated Naphthalene-Argon Clusters [J].
Patzer, Alexander ;
Schuetz, Markus ;
Jouvet, Christophe ;
Dopfer, Otto .
JOURNAL OF PHYSICAL CHEMISTRY A, 2013, 117 (39) :9785-9793
[90]   Infrared spectroscopy of jet-cooled cationic polyaromatic hydrocarbons: Naphthalene [J].
Piest, H ;
von Helden, G ;
Meijer, G .
ASTROPHYSICAL JOURNAL, 1999, 520 (01) :L75-L78