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2022
3D Printing Flexible Sodium Ion Micro-batteries with Ultrahigh Areal Capacity and Robust Rate Capability

J.X. Ma, S.H. Zheng,* L.P. Chi, Y. Liu, Y. Zhang, K. Wang, and Z.-S. Wu*  
Advanced Materials, 2022, Accepted.

Recent Advances and Design Principle of Electrocatalysts for Electrooxidation of Organics

X.H. Wu, Y. Wang, and Z.-S. Wu* 
Chem, 2022, Accepted.

All 3D printing shape-conformable zinc ion hybrid capacitors with ultrahigh areal capacitance and improved cycle life

Y. Liu, S.h. Zheng*, J.X. Ma, X. Wang, L.Z. Zhang, P. Das, K. Wang, Z.-S. Wu* 
Advanced Energy Materials, 2022, Accepted.

Two-Dimensional Mesoporous Materials for Energy Storage and Conversion: Current Status, Chemical Synthesis and Challenging Perspectives

J.Q. Qin, Z. Yang, F.F. Xing, L.Z. Zhang, H.T. Zhang, Z.-S. Wu* 
Electrochemical Energy Reviews, 2022, Accepted.

Unraveling the Design Principles of Battery-Supercapacitor Hybrid Devices: From Fundamental Mechanisms to Microstructure Engineering and Challenging Perspectives

F.F. Xing, Z.H. Bi, F. Su, F.Y. Liu, Z.-S. Wu* 
Advanced Energy Materials, 2022, Accepted.

Water-in-Salt Ambipolar Redox Electrolyte Extraordinarily Boosting High Pseudocapacitive Performance of Micro-Supercapacitors

C.X. Meng, F. Zhou, H.Q. Liu, Y.Y. Zhu, Q. Fu,* and Z.-S. Wu* 
ACS Energy Letters, 2022, Accepted.

Recent Status and Future Perspectives of 2D MXene for Micro-supercapacitors and Micro-batteries

Y.Y. Zhu, S. Wang, J.X. Ma, P. Das, S.H. Zheng, Z.-S. Wu* 
Energy Storage Materials, 2022, Accepted.

Kinetic regulation of MXene with water-in-LiCl electrolyte for high-voltage micro-supercapacitors

Y.Y. Zhu†, S.H. Zheng†, P.F. Lu, J.X. Ma, P. Das, F. Su, H.-M. Cheng*, Z.-S. Wu* 
National Science Review, 2022, Accepted.

Digital Microscale Electrochemical Energy Storage Devices Towards Fully Connected and Intelligent World

X.Y. Shi, P. Das, Z.-S. Wu*
ACS Energy Letters, 2022, 7, 267-281.
DOI: 10.1021/acsenergylett.1c01854 [PDF]

2.4 V ultrahigh-voltage aqueous MXene based asymmetric micro-supercapacitors with high volumetric energy density towards a self-sufficient integrated microsystem

Y.Y. Zhu, S.H. Zheng, J.Q. Qin, J.X. Ma, P. Das, F. Zhou, Z.-S. Wu* 
Fundamental Research, 2022, Accepted.

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Dalian Institute of Chemical Physics, CAS
457 Zhongshan Road Dalian, China 116023
E-mail: wuzs@dicp.ac.cn

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