The inhibition of CsPbBr3 nanocrystals glass from self-crystallization with the assistance of ZnO modulation for rewritable data storage
Autor: | Mengfeifei Jin, Xiaojuan Liang, Weijie Zhou, Weidong Xiang, Wenqiang Ma, Qin Wang, Peiqing Zhang |
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Rok vydání: | 2022 |
Předmět: |
3D optical data storage
Materials science business.industry General Chemical Engineering 02 engineering and technology General Chemistry 010402 general chemistry 021001 nanoscience & nanotechnology Laser 01 natural sciences Industrial and Manufacturing Engineering 0104 chemical sciences Annealing (glass) law.invention Nanocrystal Modulation law Computer data storage Femtosecond Environmental Chemistry Optoelectronics Crystallization 0210 nano-technology business |
Zdroj: | Chemical Engineering Journal. 427:129812 |
ISSN: | 1385-8947 |
DOI: | 10.1016/j.cej.2021.129812 |
Popis: | In the era of big data, the large amount of data generated every second requires modern and advanced data storage technologies. Femtosecond (fs) laser induced crystallization allow for the realization of fixed-point crystallization inside the CsPbBr3 nanocrystals glasses (CPB), which can be applied in data storage. However, CPB is prone to self-crystallization prior to further heat treatment, interfering with fs-induced crystallization inside the glass and seriously hindering its application in data storage. Herein, we first propose the inhibition of CPB from self-crystallization by modulating the content of ZnO (4–20 mol%) using a melt-quenching method. ZnO was employed as a network modifier and was closely related to the glass network structure. When the content of ZnO was 4%, the CPB did not self-crystallize and was colorless. It was applied in the rewritable data storage by combining the 800 nm fs laser-induced crystallization, annealing (460 ℃/0.5 h) and fs laser erasing (20 mW). This work demonstrates a simple and efficient way to control the self-crystallization of CPBs, enhancing their potential practical application in high-capacity optical data storage with ultra-long working lifetimes. |
Databáze: | OpenAIRE |
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