2024 年 Microstructures 第4卷第3期正式上线,期刊文章均为开放获取。本期包括Review 7篇、Research Article 6篇,Perspective 2篇,共计15篇文章。编辑部对此进行了汇总,分为上下两期进行分享。本期文章涉及领域包含原位透射电镜、仿生智能材料、电池、储能、电催化等。欢迎大家阅读、下载、转发。感谢编委、作者、审稿人、读者以及其他相关人员对 Microstructures 的大力支持!
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1
Review
Na-deficient P2-type layered oxide cathodes for practical sodium-ion batteries
How to cite: Huang Y, Zeng W, Li K, Zhu X. Na-deficient P2-type layered oxide cathodes for practical sodium-ion batteries. Microstructures 2024;4:2024027. http://dx.doi.org/10.20517/microstructures.2023.102
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原文链接:https://www.oaepublish.com
/articles/microstructures.2023.102
2
Review
Biomimetic-smart materials for osteochondral regeneration and repair
How to cite: Jia QP, Li QF, Boucetta H, Xu ZP, Zhang LX. Biomimetic-smart materials for osteochondral regeneration and repair. Microstructures 2024;4:2024026. http://dx.doi.org/10.20517/microstructures.2023.84
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原文链接:https://www.oaepublish.com
/articles/microstructures.2023.84
3
Review
Recent advances in carbon-based sulfur host materials for lithium-sulfur batteries
How to cite: Yu XF, Shao DY, Xu J, Cao J. Recent advances in carbon-based sulfur host materials for lithium-sulfur batteries. Microstructures 2024;4:2024030. http://dx.doi.org/10.20517/microstructures.2023.82
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原文链接:https://www.oaepublish.com
/articles/microstructures.2023.82
4
Research Article
Surface engineering of Li3V2(PO4)3-based cathode materials with enhanced performance for lithium-ion batteries working in a wide temperature range
How to cite: Liang M, Wang Y, Dong H, Wang L, Peng Q, Yang C, Xiao Y, Wang Y, Chou S, Sun B, Chen S. Surface engineering of Li3V2(PO4)3-based cathode materials with enhanced performance for lithium-ion batteries working in a wide temperature range. Microstructures 2024;4:2024034. http://dx.doi.org/10.20517/microstructures.2023.90
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原文链接:https://www.oaepublish.com
/articles/microstructures.2023.90
5
Research Article
Computational exploration of two-dimensional vacancy-free boridene sheet and its derivatives: high stabilities and the promise for hydrogen evolution reaction
How to cite: Zhao Y, Zhang J, Ma F, Wu H, Meng W, Liu Y, Jiao Y, Du A. Computational exploration of two-dimensional vacancy-free boridene sheet and its derivatives: high stabilities and the promise for hydrogen evolution reaction. Microstructures 2024;4:2024032. http://dx.doi.org/10.20517/microstructures.2023.80
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原文链接:https://www.oaepublish.com
/articles/microstructures.2023.80
6
Research Article
Integrating Cu/CuxO ternary nanocomposites with multi-walled carbon nanotubes enabling a high-performance nonenzymatic amperometric glucose sensor
How to cite: Xi W, Zhang Y, Zhang Z, Chen Y, Huang X, Mou H, Deng Z, Li Z, Xu X, Zheng W. Integrating Cu/CuxO ternary nanocomposites with multi-walled carbon nanotubes enabling a high-performance nonenzymatic amperometric glucose sensor. Microstructures 2024;4:2024028. http://dx.doi.org/10.20517/microstructures.2023.79
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原文链接:https://www.oaepublish.com
/articles/microstructures.2023.79
7
Perspective
Cyclodextrin-assisted supramolecular host-guest inclusion for durable and sustainable optoelectronics
How to cite: Chen H, Chang X, Yang G, Lei BX, Wu WQ. Cyclodextrin-assisted supramolecular host-guest inclusion for durable and sustainable optoelectronics. Microstructures 2024;4:2024031. http://dx.doi.org/10.20517/microstructures.2023.83
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原文链接:https://www.oaepublish.com
/articles/microstructures.2023.83
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Volume 2, Issue 2
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Volume 3, Issue 1
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