| Literature DB >> 30258064 |
Chih-Hao Chin1, Meng-Yeh Lin1, Tzu-Ping Huang1, Pei-Zhen Wu1, Yu-Jong Wu2,3.
Abstract
The direct infrared (IR) absorption spectra of propargyl cations were recorded. These cations were generated via the electron bombardment of a propyne/Ar matrix sample during matrix deposition. Secondary photolysis with selected ultraviolet (UV) light was used for grouping the observed bands of various products. The band assignment of the propargyl cation in solid Ar was performed according by referring to the previous infrared photodissociation (IRPD) and velocity-map imaging photoelectron (VMI-PE) data, and via theoretical predictions of the anharmonic vibrational wavenumbers, band intensities, and deuterium-substituted isotopic ratios. Almost all the IR active bands with an observable intensity were recorded and the ν11 mode was reported for the first time.Entities:
Year: 2018 PMID: 30258064 PMCID: PMC6158168 DOI: 10.1038/s41598-018-32644-3
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Observed species generated from bombardment of H3C3H/Ar matrix sample with 200-eV and 2000-eV electrons and their photolytic behaviors.
| Species | Observed band positions/cm−1 | Ref. | 385 nm | 160 nm |
|---|---|---|---|---|
| HC3Ha | 547.6, 3266.2 (3262.9)b |
[ | ↑c | —c |
| H3C3H+ | 583.2 (581.1), 1243.0 |
[ | ↑ | ↓ |
| CH3 | 619.9 |
[ | ↑ | ↓ |
| H2C3Ha | 686.5, 1061.8, 1935.4, 3028.3, 3310.0 |
[ | ↑ | ↓ |
| HCCHa | 737.2, 3285.7 (3287.9), 3293.3 |
[ | ↑ | — |
| C6H4 | 740.7 (743.7), 1008.7, 1040.9, |
[ | ↑ | ↓ |
| H2C3H2+a | 791.4, 874.4, 1307.3, 2929.0, 3020.8 |
[ | ↓ | ↓ |
| H2CC(H)CH2 | 800.9, 1179.4, 3018.9 |
[ | ↓ | ↑ |
| H2C3H2a | 837.7, 996.2, 1390.6, 1955.3, 1998.4, 3000.1 |
[ | ↑ | ↓ |
| Ar2H+a | 903.4 |
[ | ↓ | ↓ |
| C4H6a | 910.8, 1016.8, 1382.9 |
[ | — | ↓ |
| H2C3 | 999.2 (1003.0), 1446.8 (1448.6) |
[ | ↓ | — |
| HC3a | 1824.8 (1832.6), 3238.3 |
[ | ↓ | ↑ |
| H2C3H−a | 1856.4 |
[ | ↓ | — |
| Cn | 1913.8, 1941.8, 1945.8 | ↑ | — | |
| C3 | 2039.2 (2034.8) |
[ | ↓ | ↑ |
| H2C3H+ | 606.8, 1105.2, 1140.6, 1433.2, 2075.2 (multiplet), 3000.6, 3063.4, 3195.3 | TW | ↓ | ↓ |
aSpecies also observed in experiments on electron bombardment with 200-eV electrons.
bBands in minor matrix sites.
cSymbols indicate band intensity increase (↑), decrease (↓), and no change (—) upon photolysis.
Figure 1(A) Partial IR spectrum of a propyne/Ar (1/500) matrix sample bombarded with 2000-eV electrons at 8 K (absorption multiplies 0.2) and (B) IR difference spectrum of sample in (A) upon photolysis with 385-nm light for 1 h. A: H2C3H2, P: H3C3H, A+: H2C3H2+, P+: H3C3H+, *: H2C3H+, Cn: carbon clusters.
Comparison of experimental and predicted anharmonic vibrational wavenumbers of propargyl cations. Predicted IR intensities are listed in parentheses.
| Mode | Sym | B3LYP /aug-cc-pVTZ | CCSD(T*)-F12a/VTZ-F12 | IRPD | PE | Matrix |
|---|---|---|---|---|---|---|
|
| A1 | 3226.4 (115)a | 3236 (112)a | 3238 | 3195.3 (28)b | |
|
| A1 | 3007.1 (30) | 2990 (29) | 3004 | 3000.6 (10) | |
|
| A1 | 2088.1 (370) | 2080 (371) | 2077 | 2086 | 2075.2c (100) |
|
| A1 | 1458.3 (9) | 1446 (12) | 1445 | 1433.2 (6) | |
|
| A1 | 1137.2 (25) | 1123 (19) | 1222 | 1120 | 1140.6 (13) |
|
| B1 | 1112.4 (10) | 1099 | 1111 | 1105.2 (6) | |
|
| B1 | 904.4 (5) | 872 | 858 | ||
|
| B1 | 279.3 (25) | 264 | |||
|
| B2 | 3043.0 (45) | 3080 | 3093 | 3063.4 (22) | |
|
| B2 | 1012.4 (1) | 1017 | |||
|
| B2 | 625.7 (58) | 615 | 606.8 (15) | ||
|
| B3 | 331.2 (15) | 298 | |||
| Ref | This work |
[ |
[ |
[ | This work |
aThe unit of the calculated IR band intensity shown in the parentheses is km mol−1.
bThe relative band intensities of the observed IR bands of H2CCCH+ are shown in the parentheses.
cThis band was reported at 2080 cm−1 for solid Ne[20].
Figure 2Partial IR spectrum of electron-bombarded deuterium-substituted D3C3D/Ar (1/500) matrix sample upon photolysis with 385-nm light at 8 K. P: D3C3D, A+: D2C3D2+, and *: D2C3D+.
Comparison of D-isotopic ratios of experimental and theoretical vibrational wavenumbers of propargyl cations.
| Mode | Line position/cm−1 | Isotopic ratioa | |||
|---|---|---|---|---|---|
| H2C3H+ | D2C3D+ | Predictionb | Ne matrix | Ar matrix | |
|
| 3195.3 | 2487.3 | 0.7768 | 0.7784 | |
|
| 3000.6 | 2201.0 | 0.7304 | 0.7335 | |
|
| 2075.2 | 1942.1 | 0.9352 | 0.9399 | 0.9368 |
|
| 1433.2 | 1191.7 | 0.8327 | 0.8315 | |
|
| 1140.6 | 938.7 | 0.8315 | 0.8330 | |
|
| 1105.2 | 891.3 | 0.8012 | 0.8065 | |
|
| 3063.4 | 2301.9 | 0.7458 | 0.7514 | |
|
| 606.8 | — | 0.7765 | — | |
| Ref | This work | This work | This work |
[ | This work |
aThe ratio of the wavenumber of the deuterium isotopic species to that of H2C3H+.
bTheoretical values predicted using B3LYP/aug-cc-pVTZ.