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特刊征稿:MNS (杰青主编期刊)主题:下一代微纳米器件的二维材料和异质结构

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投稿链接:

https://www.oaecenter.com/login?JournalId=mns&IssueId=mns26091410617

期刊主页:

https://www.oaepublish.com/mns



特别主题

特别主题封面

主题:下一代微纳米器件的二维材料和异质结构

特别主题 微纳米科学

ISSN:3071-4753(在线)

提交截止日期: 2027年2月28日

客座编辑

教授。 逄金波

济南大学

教授。 张墅野

哈尔滨工业大学

教授。 门德斯·拉斐尔·G。(R G Mendes)

法国国家科学研究中心

教授。 周伟家

济南大学

特别主题介绍

二维(2D)材料及其范德华异质结构已在实验室中成熟,并成为未来电子学、光子学、自旋电子学和能源应用的重要平台。 本期特刊收集了从精确合成和界面物理到功能设备制造的原创研究、观点和评论。

 

我们邀请大家就石墨烯、过渡金属二硫属化物、六方氮化硼、MXenes、金属烯、钙钛矿、新兴层状磁体、受限低维几何形状和其他相关二维层状结构(BiOSe、MnBiTe、MoSi2N4、MOF 和 COF)的受控晶圆级合成及其后处理策略做出贡献,例如转移技术、热退火和基于激光的制造。 第二个重点涉及定义器件的接口:范德华间隙、单晶金属触点以及辅助晶体管缩放的接触和介电工程。 异质结构的发展仍然至关重要,包括扭曲和莫尔超晶格、能带排列、光吸收和发射、相关态和拓扑态以及量子阱。

 

该问题还鼓励连接物理和应用的主题:基于二维的微处理器、实验室到晶圆厂和铸造集成、低电阻率互连、柔性和可穿戴电子学、光电子学和共封装光学、气体和生物传感、自旋电子学的二维磁性和斯格明子、具有自旋缺陷的量子传感以及用于催化和能量转换的二维材料。 欢迎提出理论、机器学习辅助发现和现场表征来提升这些方向。

 

本期特刊涵盖合成、界面科学、异质结构物理和器件应用,旨在评估原子级薄材料如何满足缩放、能量效率和新的量子功能的要求。 我们欢迎世界各地知名团体和早期职业研究人员提交的材料。

关键词

  1. 二维材料

  2. 范德华异质结构

  3. 莫伊雷超晶格

  4. 过渡金属二硫属化物

  5. 石墨烯

  6. 六方氮化硼

  7. MXenes

  8. 新兴的二维材料

  9. 晶圆级合成

  10. 转移技术

  11. 治疗后

  12. 基于激光的制造

  13. 接触工程

  14. 范德瓦尔斯差距

  15. 二维半导体电子学

  16. 柔性电子产品

  17. 光电子学

  18. 互连

  19. 二维磁性

  20. 自旋电子学

  21. 量子传感

  22. 拓扑和相关状态

  23. 能源应用

  24. 传感应用

提交截止日期

2027年2月28日

提交信息


有关作者说明,请参阅 https://www。oaepublish。com/mns/author_instructionsFor 在线提交,请登录 https://www。oaecenter。com/login?JournalId=mns&IssueId=mns26091410617Submission 截止日期:202  7 年 2 月 28 日联系人:Margie Ma,总编辑,margie@oaepublish。com;Mahmood Ul Hassan, Dr。Hassan@oae-publish。com

https://www.oaepublish.com/specials/mns.10617



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附录MNS 期刊简介:


https://www.oaepublish.com/mns



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https://www.oaepublish.com/specials/mns.10617



Special Topic

Special Topic Cover

Topic: 2D Materials and Heterostructures for Next-Generation Micro-Nano Devices

A Special Topic of Micro Nano Science

ISSN : 3071-4753 (online)

Submission deadline: 28 Feb 2027

Guest Editors

Prof. Jinbo Pang

Institute for Advanced Interdisciplinary Research, University of Jinan, Jinan, Shandong, China.

Prof. Shuye Zhang

School of Materials Science and Engineering, Harbin Institute of Technology, Harbin, Heilongjiang, China.

Assoc. Prof. Mendes Rafael G.

CNRS Centre National de la Recherche Scientifique, Paris, France.

Prof. Weijia Zhou

Institute for Advanced Interdisciplinary Research, University of Jinan, Jinan, Shandong, China.

Special Topic Introduction

Two-dimensional (2D) materials and their van der Waals heterostructures have matured in laboratory and then become important platform for future electronics, photonics, spintronics, and energy applications. This Special Issue collect original research, perspectives and reviews ranging from precise synthesis and interface physics to functional device fabrication.

 

We invite contributions addressing the controlled, wafer-scale synthesis of graphene, transition-metal dichalcogenides, hexagonal boron nitride, MXenes, metallene, perovskites, emerging layered magnets, confined low-dimensional geometries, and other related 2D layered structures (BiOSe, MnBiTe, MoSi2N4, MOF and COF), as well as their post-treatment strageties, e.g., transfer techniques, thermal annealing, and laser-based manufacturing. A second focus addresses the interfaces that define devices : the van der Waals gap, single-crystal metal contacts, and the contact and dielectric engineering that assist transistor scaling. Heterostructure development remains vital, including twisted and moiré superlattices, band alignment, light absorption and emission, correlated and topological states, and quantum wells.

 

The issue also encourages topics bridging physics and applications: 2D-based microprocessors, lab to fab, and foundry integration, low-resistivity interconnects, flexible and wearable electronics, optoelectronics and co-packaged optics, gas and biological sensing, 2D magnetism and skyrmions for spintronics, quantum sensing with spin defects, and 2D materials for catalysis and energy conversion. Theory, machine-learning-assisted discovery, and in situ characterization that elevate these directions are welcome.

 

By covering synthesis, interface science, heterostructure physics, and device applications, this Special Issue aims to evaluate how atomically thin materials will satisfy the requirements of scaling, energy efficiency, and new quantum functionalities. We welcome submissions from established groups and early-career investigators worldwide.

Keywords

  1. Two-dimensional materials

  2. van der Waals heterostructures

  3. Moiré superlattices

  4. Transition-metal dichalcogenides

  5. Graphene

  6. Hexagonal boron nitride

  7. MXenes

  8. Emerging 2D materials

  9. Wafer-scale synthesis

  10. Transfer techniques

  11. Post-treatments

  12. Laser-based manufacturing

  13. Contact engineering

  14. van der Waals gap

  15. 2D semiconductor electronics

  16. Flexible electronics

  17. Optoelectronics

  18. Interconnects

  19. 2D magnetism

  20. Spintronics

  21. Quantum sensing

  22. Topological and correlated states

  23. Energy applications

  24. Sensing applications

Submission Deadline

28 Feb 2027

Submission Information


For Author Instructions, please refer to https://www.oaepublish.com/mns/author_instructions
For Online Submission, please login at https://www.oaecenter.com/login?JournalId=mns&IssueId=mns26091410617
Submission Deadline: 28 Feb 2027
Contacts: Margie Ma, Managing Editor, margie@oaepublish.com; Mahmood Ul Hassan, Dr.Hassan@oae-publish.com


Published Articles

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https://www.oaepublish.com/specials/mns.10617