材料科学技术(英文版)2021,Vol.75Issue(16) :118-125.

Three distinct optical-switching states in phase-change materials containing impurities:From physical origin to material design

Chaobin Bi Kaicheng Xu Chaoquan Hu Ling Zhang Zhongbo Yang Shuaipeng Tao Weitao Zheng
材料科学技术(英文版)2021,Vol.75Issue(16) :118-125.

Three distinct optical-switching states in phase-change materials containing impurities:From physical origin to material design

Chaobin Bi 1Kaicheng Xu 2Chaoquan Hu 1Ling Zhang 3Zhongbo Yang 1Shuaipeng Tao 1Weitao Zheng4
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作者信息

  • 1. State Key Laboratory of Superhard Materials,Key Laboratory of Automobile Materials of MOE,School of Materials Science and Engineering,Jilin University,Changchun 130012,China
  • 2. China-Japan Union Hospital of Jilin University,Changchun 130033,China
  • 3. State Key Laboratory of Supramolecular Structure and Materials,College of Chemistry,Jilin University,Changchun 130012,China
  • 4. State Key Laboratory of Superhard Materials,Key Laboratory of Automobile Materials of MOE,School of Materials Science and Engineering,Jilin University,Changchun 130012,China;State Key Laboratory of Automotive Simulation and Control,Jilin University,Changchun 130025,China
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Abstract

Ge2Sb2Tes is the most widely utilized chalcogenide phase-change material for non-volatile photonic applications,which undergoes amorphous-cubic and cubic-hexagonal phase transition under external excitations.However,the cubic-hexagonal optical contrast is negligible,only the amorphous-cubic phase transition of Ge2Sb2Te5 is available.This limits the optical switching states of traditional active dis-plays and absorbers to two.We find that increasing structural disorder difference of cubic-hexagonal can increase optical contrast close to the level of amorphous-cubic.Therefore,an amorphous-cubic-hexagonal phase transition with high optical contrast is realized.Using this phase transition,we have developed display and absorber with three distinct switching states,improving the switching perfor-mance by 50%.Through the combination of first-principle calculations and experiments,we reveal that the key to increasing structural disorder difference of amorphous,cubic and hexagonal phases is to intro-duce small interstitial impurities(like N)in Ge2Sb2Tes,rather than large substitutional impurities(like Ag)previously thought.This is explained by the formation energy and lattice distortion.Based on the impurity atomic radius,interstitial site radius and formation energy,C and B are also potential suit-able impurities.In addition,introducing interstitial impurities into phase-change materials with van der Waals gaps in stable phase such as GeSb4Te7,GeSb2Te4,Ge3Sb2Te6,Sb2Te3 will produce high optical con-trast amorphous-metastable-stable phase transition.This research not only reveals the important role of interstitial impurities in increasing the optical contrast between metastable-stable phases,but also proposes varieties of candidate matrices and impurities.This provides new phase-change materials and design methods for non-volatile optical devices with multi-switching states.

Key words

Phase change materials/Impurities/Three states/Structural disorder/Photonic applications

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基金项目

出版年

2021
材料科学技术(英文版)
中国金属学会 中国材料研究学会 中国科学院金属研究所

材料科学技术(英文版)

CSTPCDCSCDSCI
影响因子:0.657
ISSN:1005-0302
参考文献量65
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