Transformation of 3D Metal–Organic Frameworks into Nanosheets with Enhanced Memristive Behavior for Electronic Data Processing

The transition from three-dimensional (3D) to two-dimensional (2D) semiconducting and insulating materials for micro- and opto-electronics is driven by an energy efficiency and device miniaturization. Herein, the simplicity of growth and stacking of 2D metal–organic framework (MOF) with such planar devices opens up new perspectives in controlling their efficiency and operating parameters. Here, the study reports on 3D to 2D MOF’ structural transformation to achieve ultrathin nanosheets with enhanced insulating properties. Based on neutral N-donor ligands, the study designs and solvothermally synthesizes 3D MOFs followed by their thermal and solvent treatment to implement the transformation. A set of single crystal and powder X-ray diffraction, electron microscopy, Raman spectroscopy, numerical modeling, and mechanical exfoliation confirm the nature of the transformation. Compared with initial 3D MOF, its nanosheets demonstrate sufficient changes in electronic properties, expressed as tuning their absorption, photoluminescence, and resistivity. The latter allows to demonstrate the prototype of ultrathin memristive element based on a 4 to 32 nm MOF nanosheet with enhanced functionality (150 to 1400 ON/OFF ratio, retention time exceeding 7300 s, and 100 cycles of switching), thereby, extending the list of scalable and insulating 2D MOFs for micro- and opto-electronics. © 2025 Elsevier B.V., All rights reserved.

Авторы
Mezenov Yuri A. 1 , Bachinin Semyon V. 2 , Kenzhebayeva Yuliya A. 2 , Efimova Anastasiia S. 2 , Alekseevskiy Pavel V. 2 , Poloneeva Daria Y. 3 , Lubimova Anastasia V. 2 , Povarov S.A. 2 , Shirobokov Vladimir P. 2 , Dunaevskiy Mikhail S. 2 , Falchevskaya Aleksandra S. 4 , Potapov Andrei S. 5 , Novikov Alexander S. 6, 7 , Selyutin A.A. 6 , Boulet Pascal 8 , Kulakova Alena N. 2 , Milichko Valentin A. 2, 8
Номер выпуска
16
Язык
English
Статус
Published
Номер
2405989
Том
12
Год
2025
Организации
  • 1 Harbin Engineering University, Harbin, China
  • 2 School of Physics and Engineering, Saint Petersburg National Research University of Information Technologies, Mechanics and Optics University ITMO, Saint Petersburg, Russian Federation
  • 3 Physical Sciences and Engineering Division, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia
  • 4 Saint Petersburg National Research University of Information Technologies, Mechanics and Optics University ITMO, Saint Petersburg, Russian Federation
  • 5 Laboratory of Metal-Organic Coordination Polymers, Siberian Branch, Russian Academy of Sciences, Novosibirsk, Russian Federation
  • 6 Saint Petersburg State University, Saint Petersburg, Russian Federation
  • 7 RUDN University, Moscow, Russian Federation
  • 8 Institut Jean Lamour, Nancy, France
Ключевые слова
memristive behavior; metal–organic frameworks; nanosheets; structural transformation
Цитировать
Поделиться

Другие записи

Avatkov V.A., Apanovich M.Yu., Borzova A.Yu., Bordachev T.V., Vinokurov V.I., Volokhov V.I., Vorobev S.V., Gumensky A.V., Иванченко В.С., Kashirina T.V., Матвеев О.В., Okunev I.Yu., Popleteeva G.A., Sapronova M.A., Свешникова Ю.В., Fenenko A.V., Feofanov K.A., Tsvetov P.Yu., Shkolyarskaya T.I., Shtol V.V. ...
Общество с ограниченной ответственностью Издательско-торговая корпорация "Дашков и К". 2018. 411 с.