Issue 9, 2022

Can a molecular switch exist in both superalkali electride and superalkalide forms?

Abstract

To combine both electride and alkalide characteristics in one molecular switch, it is shown herein that the phenalenyl radical and the M3 ring (M3–PHY, M = Li, Na, and K) stacked with parallel and vertical geometries are good candidates. The former geometry is the superalkali electride e⋯M3+–PHY while the latter geometry is the superalkalide Mδ–M2(1–δ)+–PHY. The superalkalide Mδ–M2(1−δ)+–PHY may isomerize to the superalkali electride e⋯M3+–PHY (M = Li, Na, and K) using suitable long-wavelength irradiation, while the latter may isomerize to the former with suitable short-wavelength irradiation. Also, applying suitable oriented external electric fields can drive the superalkalide MδM2(1−δ)+–PHY to change into the superalkali electride e⋯M3+–PHY (M = Li, Na, and K). The differences in the static and dynamic first hyperpolarizability (β0) values between them were also studied.

Graphical abstract: Can a molecular switch exist in both superalkali electride and superalkalide forms?

Supplementary files

Article information

Article type
Paper
Submitted
11 Dec 2021
Accepted
04 Feb 2022
First published
04 Feb 2022

Phys. Chem. Chem. Phys., 2022,24, 5690-5699

Can a molecular switch exist in both superalkali electride and superalkalide forms?

X. Yi, Y. Wang, H. Zhang, J. Cai, X. Liu, J. Li, Z. Wang, F. Bai and Z. Li, Phys. Chem. Chem. Phys., 2022, 24, 5690 DOI: 10.1039/D1CP05657C

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