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Results for “"Xuetao Zhang"”

4 results

Two‐Dimensional Transition Metal Carbides and Nitrides (MXenes): Synthesis, Properties, and Electrochemical Energy Storage Applications

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Chuanfang Zhang, Yonglu Ma, Xuetao Zhang, Sina Abdolhosseinzadeh et al.

Journal: Energy & environment materialsYear: 2019Citations: 580

A family of 2D transition metal carbides and nitrides known as MXenes has received increasing attention since the discovery of Ti 3 C 2 in 2011. To date, about 30 different MXenes with well‐defined structures and properties have been synthesized, and many more are theoretically predicted to exist. D...

Physical SciencesMaterials ScienceMaterials ChemistryOpen Access
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Recent Advances of Energy Solutions for Implantable Bioelectronics

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Hongwei Sheng, Xuetao Zhang, Jie Liang, Mingjiao Shao et al.

Journal: Advanced Healthcare MaterialsYear: 2021Citations: 145

The emerging field of implantable bioelectronics has attracted widespread attention in modern society because it can improve treatment outcomes, reduce healthcare costs, and lead to an improvement in the quality of life. However, their continuous operation is often limited by conventional bulky and ...

Physical SciencesEngineeringBiomedical Engineering
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Lightweight, interconnected VO<sub>2</sub> nanoflowers hydrothermally grown on 3D graphene networks for wide-voltage-window supercapacitors

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Junya Wang, Xuetao Zhang, Yue Zhang, Asim Abas et al.

Journal: RSC AdvancesYear: 2017Citations: 60

Highly stable and interconnected VO<sub>2</sub> nanoflowers were uniformly grown on flexible three dimensional graphene networks, which directly served as a lightweight and high conductivity supercapacitor electrode (VO<sub>2</sub> NF@3DG).

Physical SciencesMaterials ScienceElectronic, Optical and Magnetic MaterialsOpen Access
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High temperature superconductivity at FeSe/LaFeO3 interface

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Yuanhe Song, Zheng Chen, Qinghua Zhang, Haichao Xu et al.

Journal: Nature CommunicationsYear: 2021Citations: 51

Abstract Enormous enhancement of superconducting pairing temperature ( T g ) to 65 K in FeSe/SrTiO 3 has made it a spotlight. Despite the effort of interfacial engineering, FeSe interfaced with TiO x remains the unique case in hosting high T g , hindering a decisive understanding on the general mech...

Physical SciencesMaterials ScienceElectronic, Optical and Magnetic MaterialsOpen Access
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