Infrared photodissociation spectra of (CS2)n+ and(CS2)n− with n=3–10 are measured in the 1100–2000 cm−1 region. All the (CS2)n+ clusters exhibit three bands at ∼1410, ∼1490, and ∼1540 cm−1. The intensity of the1540 cm−1 band relative to those of the other bands increases with increasing the cluster size, indicating that the band at 1540 cm−1 is assignable to the antisymmetric CS stretching vibration of solvent CS2 molecules in the clusters. On the basis of density functional theory calculations, the 1410 and 1490 cm−1 bands of (CS2)n+ are assigned to CS stretching vibrations of the C 2S4+ cation core with a C2 form. The (CS2)n− clusters show two bands at around 1215 and 1530 cm−1. Similar to the case of cation clusters, the latter band is...
We report the photochemistry of (OCS)n− cluster ions following 395 nm (n = 2–28) and 790 nm (n = 2–4...
IR photodissociation (IRPD) spectra of (N2O)(2)(+)center dot Ar and (N2O)(n)(+) with n = 3-8 are mea...
Infrared photodissociation spectra of CH3NH3+–Ar and (CH3NH2)nH+ with n=2–4 are measured in the 2600...
Infrared photodissociation spectra of (CS2)n+ and(CS2)n− with n=3–10 are measured in the 1100–2000 c...
Infrared photodissociation (IRPD) spectra of (OCS) n+ and (OCS)n- (n = 2-6) cluster ions are measure...
Infrared photodissociation (IRPD) spectra of carbon dioxide cluster ions,(CO2)n+ with n=3–8, are mea...
Gordon Research Conferences –Molecular & Ionic Clusters, September 7-12, 2008, Centre Paul Langevin,...
We report infrared photodissociation spectra of $textrm {[Sn(CO}_{2})_{n}]$ ($n$=2-6) clusters. We e...
The gas-phase vibrational spectroscopy of cold C2nN− (n=2–4) anions is investigated in the CC and CN...
Infrared photodissociation (IRPD) spectra of [H2O• (CO2)n]+ and [CH3OH• (CO2)n]+ (n=1–7) are measure...
Anions are relevant in many different facets of chemistry. The study of anions, their interaction wi...
We present infrared spectra and density functional theory calculations of mass selected [Sn(CO<sub>...
The infrared photodissociation spectra of [(CO2)n(CH3OH)m]- (n = 1-4, m = 1, 2) are measured in the ...
We report the photochemistry of (OCS)n− cluster ions following 395 nm (n = 2–28) and 790 nm (n = 2–4...
IR photodissociation (IRPD) spectra of (N2O)(2)(+)center dot Ar and (N2O)(n)(+) with n = 3-8 are mea...
Infrared photodissociation spectra of CH3NH3+–Ar and (CH3NH2)nH+ with n=2–4 are measured in the 2600...
Infrared photodissociation spectra of (CS2)n+ and(CS2)n− with n=3–10 are measured in the 1100–2000 c...
Infrared photodissociation (IRPD) spectra of (OCS) n+ and (OCS)n- (n = 2-6) cluster ions are measure...
Infrared photodissociation (IRPD) spectra of carbon dioxide cluster ions,(CO2)n+ with n=3–8, are mea...
Gordon Research Conferences –Molecular & Ionic Clusters, September 7-12, 2008, Centre Paul Langevin,...
We report infrared photodissociation spectra of $textrm {[Sn(CO}_{2})_{n}]$ ($n$=2-6) clusters. We e...
The gas-phase vibrational spectroscopy of cold C2nN− (n=2–4) anions is investigated in the CC and CN...
Infrared photodissociation (IRPD) spectra of [H2O• (CO2)n]+ and [CH3OH• (CO2)n]+ (n=1–7) are measure...
Anions are relevant in many different facets of chemistry. The study of anions, their interaction wi...
We present infrared spectra and density functional theory calculations of mass selected [Sn(CO<sub>...
The infrared photodissociation spectra of [(CO2)n(CH3OH)m]- (n = 1-4, m = 1, 2) are measured in the ...
We report the photochemistry of (OCS)n− cluster ions following 395 nm (n = 2–28) and 790 nm (n = 2–4...
IR photodissociation (IRPD) spectra of (N2O)(2)(+)center dot Ar and (N2O)(n)(+) with n = 3-8 are mea...
Infrared photodissociation spectra of CH3NH3+–Ar and (CH3NH2)nH+ with n=2–4 are measured in the 2600...