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Contract number
075-15-2022-1112
Time span of the project
2022-2024

As of 01.12.2023

45
Number of staff members
13
scientific publications
General information

Name of the project: 

Creation of the Laboratory of Crystallography

Research directions: Physics and astronomy

Goals and objectives

Goals of project:

Searching for methods of the creation of new photonic and optoelectronic devices with specified optical properties determined by the modifications of their crystalline structure

Project objective:

  1. Creating new materials based on halide perovskites using heteroepitaxy, modification of the inorganic framework, functionalization of organic cations and controlled introduction of defects to augment them with new functional properties.
  2. Researching the possibility of using created novel materials and structures in various domains of photonics, including information photonics, white luminophores and polaritonic devices functioning at room temperature.
The practical value of the study

Scientific results:

  1. A method for synthesizing heteroepitaxial structures based on halide perovskites has been developed.
  2. New perovskite-like crystal structures of lead halides have been discovered, for example, with a topological hyper-star lattice.
  3. The phenomenon of spin noise has been discovered in halide perovskites for the first time.
  4. Resonant diffraction gratings based on halide perovskites have been created using focused ion beam irradiation.
  5. Photon echo in single crystals and thin films of halide perovskites has been studied.
  6. A bound state of two excitons, a biexciton, has been discovered in chloride perovskites.

Education and personnel occupational retraining:

1 PhD thesis was defended.

Cooperation:

  1. Prof. Pavlos Savvidis (Quantum Optoelectronics Lab, Westlake university, Hangzhou, China)
  2. Prof. Zhijun Ning (Shanghai Tech University, China)

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A.Yu. Samsonova, P.P. Teslina, E.I. Deribina, N.I. Selivanov, C.C. Stoumpos, and Yu.V. Kapitonov,
Low-Temperature Refractive Index Dispersion in MAPbI3 Halide Perovskite Single Crystal, J. Phys. Chem. C (2024). DOI: 10.1021/acs.jpcc.4c02066
D.S. Shtarev, D.A. Chaplygina, O.V. Patrusheva, C. Chen, A.V. Shtareva, C.C. Stoumpos, R. Kevorkyants and A.V. Emeline
The effect of precursor concentrations on the structure and optoelectronic properties of quasi low-dimensional hybrid 2-methylpyridinium lead bromide crystalline phases, J. Mater. Chem. C 12, 5596-5607 (2024). DOI: 10.1039/D4TC00271G
I.A. Solovev, R.S. Nazarov, A.O. Murzin, N.I. Selivanov, D.S. Gets, S.V. Makarov, C.C. Stoumpos, Yu.V. Kapitonov
Robust free excitons in CH3NH3PbI3 halide perovskite revealed by four-wave mixing, Advanced Optical Materials 12 (15) 2303049 (2024). DOI: 10.1002/adom.202303049
D.S. Shtarev, M.I. Balanov, A.Ju. Major, A.V. Gerasimenko, R. Kevorkyants, D.A. Zharovov, K.M. Bulanin, D.V. Pankin, A.V. Rudakova, D.A. Chaplygina, N.I. Selivanov and A.V. Emeline
The effect of the halogen on the structural, optoelectronic, and luminescent properties of hybrid (1,5-pentanediamine)PbX 4 (X = Cl, Br, I) perovskites, J. Mater. Chem. C 12, 262-275 (2024). DOI: 10.1039/D3TC02767H
A.A. Shumitskaya, V.O. Kozlov, N.I. Selivanov, C.C. Stoumpos, V.S. Zapasskii, Yu.V. Kapitonov, and I.I. Ryzhov
The Faraday Effect and Phase Transition in the CH3NH3PbI3 Halide Perovskite Single Crystal, Advanced Optical Materials 12 (10) 2302095 (2023). DOI: 10.1002/adom.202302095
M.P. Mamaeva, M. Androulidaki, V. Spanou, N.M. Kireev, N.T. Pelekanos, Yu.V. Kapitonov, and C. Stoumpos
Free Exciton and Defect-Related States in CH3NH3PbCl3 Perovskite Single Crystal, J. Phys. Chem. C, 127, 46, 22784–22789 (2023). DOI: 10.1021/acs.jpcc.3c05829
M.I. Balanov, O.A. Brylev, R. Kevorkyants, A.V. Emeline, N.I. Selivanov, Y.V. Chizhov, A.V. Syuy, D.S. Shtarev, V.V. Korochenceva
Crystal structure and electronic properties of low-dimensional hexamethylenediaminium lead halide perovskites, Dalton Trans., 52, 6388 (2023). DOI: 10.1039/D3DT00438D
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