Nonlinear Metal–Organic Framework Crystals for Efficient Multicolor Coherent Optical Emission

Author:

Zhestkij Nikolaj A.1,Efimova Anastasiia S.1,Kenzhebayeva Yuliya1,Dmitriev Maksim V.2,Novikov Alexander S.34,Yushina Irina D.5,Krylov Alexander6,Timofeeva Maria V.1,Kulakova Alena N.1,Glebova Nadezhda V.7,Krasilin Andrei A.7,Shipilovskih Sergey A.12,Milichko Valentin A.18ORCID

Affiliation:

1. School of Physics and Engineering ITMO University St. Petersburg 197101 Russia

2. Perm State University Perm Bukireva 15 Perm 614990 Russia

3. Saint Petersburg State University Saint Petersburg 199034 Russia

4. Рeoples’ Friendship University of Russia Moscow 117198 Russia

5. South Ural State University Lenin prospect 76 Chelyabinsk 454080 Russia

6. Kirensky Institute of Physics Federal Research Center KSC SB RAS Krasnoyarsk 660036 Russia

7. Ioffe institute Politekhnicheskaya 26 Saint Petersburg 194021 Russia

8. Institut Jean Lamour Universite de Lorraine UMR CNRS 7198 Nancy 54011 France

Abstract

AbstractNon‐centrosymmetric metal–organic frameworks (MOFs) have recently emerged as a promising class of coordination polymers for nonlinear optics and light conversion. Nevertheless, achieving high endurance and efficiency for the light conversion within the whole visible range by a single crystal of MOF remains a challenge. This article reports on the design of two non‐centrosymmetric MOFs based on a 1,3,5‐benzenetricarboxylic acid ligand and Er/Co ions, providing an efficient and simultaneous multiple second and third optical harmonic generations (SHG, THG) from 400 to 750 nm with a high endurance (over 100 cycles or 3 h of continuous operation). Optical experiments and quantum chemical modeling of the MOF single crystals confirm the polarization and chemistry‐dependent efficiency of SHG and THG, associated with the varied MOFs' symmetry and dipole moment. The observed coherent light conversion within the whole visible range by MOF single crystals at ambient conditions makes it possible to achieve the multicolor (up to three) coherent emission required for modern laser technologies, making MOFs highly competitive and sustainable materials for nonlinear optics.

Funder

Ministry of Science and Higher Education of the Russian Federation

Russian Science Foundation

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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