Formation of the C4Hn+ (n = 2–5) ions upon ionization of acetylene clusters in helium droplets

Author:

Moon Cheol Joo12ORCID,Erukala Swetha1,Feinberg Alexandra J.1,Singh Amandeep1ORCID,Choi Myong Yong3ORCID,Vilesov Andrey F.14ORCID

Affiliation:

1. Department of Chemistry, University of Southern California 1 , Los Angeles, California 90089, USA

2. Research Institute for Green Energy Convergence Technology, Gyeongsang National University 2 , Jinju 52828, Republic of Korea

3. Core-Facility Center for Photochemistry and Nanomaterials, Department of Chemistry (BK21 FOUR), Research Institute of Natural Sciences, Gyeongsang National University 3 , Jinju, Republic of Korea

4. Department of Physics and Astronomy, University of Southern California 4 , Los Angeles, California 90089, USA

Abstract

Infrared (IR) spectroscopy using ultracold helium nanodroplet matrices has proven to be a powerful method to interrogate encapsulated ions, molecules, and clusters. Due to the helium droplets’ high ionization potential, optical transparency, and ability to pick up dopant molecules, the droplets offer a unique modality to probe transient chemical species produced via photo- or electron impact ionization. In this work, helium droplets were doped with acetylene molecules and ionized via electron impact. Ion-molecule reactions within the droplet volume yield larger carbo-cations that were studied via IR laser spectroscopy. This work is focused on cations containing four carbon atoms. The spectra of C4H2+, C4H3+, and C4H5+ are dominated by diacetylene, vinylacetylene, and methylcyclopropene cations, respectively, which are the lowest energy isomers. On the other hand, the spectrum of C4H4+ ions hints at the presence of several co-existing isomers, the identity of which remains to be elucidated.

Funder

National Science Foundation

Korea Institute for Advancement of Technology

Korea Basic Science Institute

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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