2022
DOI: 10.3390/photochem2010014
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Phosphorescence of Hydrogen-Capped Linear Polyyne Molecules C8H2, C10H2 and C12H2 in Solid Hexane Matrices at 20 K

Abstract: Laser-ablated polyyne molecules, H(C≡C)nH, were separated by size in solutions and co-condensed with excess hexane molecules at a cryogenic temperature of 20 K in a vacuum system. The solid matrix samples containing C8H2, C10H2, and C12H2 molecules were irradiated with UV laser pulses and the phosphorescence 0–0 band was observed at 532, 605, and 659 nm, respectively. Vibrational progression was observed for the symmetric stretching mode of the carbon chain in the ground state with increments of ~2190 cm−1 for… Show more

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“…[17,18] Moreover, PLAL has been shown to produce polyynes in a polymeric solution for the realization of nanocomposites. [19] In literature, the formation of polyynes was confirmed by spectroscopy characterization as UV-Vis absorption, [20] IR absorption, [21][22][23][24] laserinduced fluorescence, [25] laser-induced phosphorescence, [26] Raman, [27,28] and resonance Raman. [17,29] Here we review the status and progress made in the synthesis of polyynes by PLAL with a focus on the role of the main process parameters in the polyyne formation.…”
Section: Introductionmentioning
confidence: 95%
“…[17,18] Moreover, PLAL has been shown to produce polyynes in a polymeric solution for the realization of nanocomposites. [19] In literature, the formation of polyynes was confirmed by spectroscopy characterization as UV-Vis absorption, [20] IR absorption, [21][22][23][24] laserinduced fluorescence, [25] laser-induced phosphorescence, [26] Raman, [27,28] and resonance Raman. [17,29] Here we review the status and progress made in the synthesis of polyynes by PLAL with a focus on the role of the main process parameters in the polyyne formation.…”
Section: Introductionmentioning
confidence: 95%