Jingsheng Chen

About Jingsheng Chen

Jingsheng Chen, With an exceptional h-index of 63 and a recent h-index of 48 (since 2020), a distinguished researcher at National University of Singapore, specializes in the field of Magnetic Materials, Oxide Materials, Spintronics, Quantum Materials.

His recent articles reflect a diverse array of research interests and contributions to the field:

Spin-orbit torque device, method for fabricating a spin-orbit torque device and method for switching a switchable magnetization of a spin-orbit torque device

Effective electrical manipulation of a topological antiferromagnet by orbital torques

Crystal Symmetry-Dependent In-Plane Hall Effect

Tuning Rashba–Dresselhaus effect with ferroelectric polarization at asymmetric heterostructural interface

Symmetry breaking for current-induced magnetization switching

Manipulation of the Topological Ferromagnetic State in a Weyl Semimetal by Spin–Orbit Torque

Interface-engineered ferroelectricity of epitaxial Hf0.5Zr0.5O2 thin films

Efficient Spin–Orbit Torque Switching in a Perpendicularly Magnetized Heusler Alloy MnPtGe Single Layer

Jingsheng Chen Information

University

Position

Department of Materials Science and Engineering

Citations(all)

14010

Citations(since 2020)

8700

Cited By

8002

hIndex(all)

63

hIndex(since 2020)

48

i10Index(all)

261

i10Index(since 2020)

147

Email

University Profile Page

Google Scholar

Jingsheng Chen Skills & Research Interests

Magnetic Materials

Oxide Materials

Spintronics

Quantum Materials

Top articles of Jingsheng Chen

Spin-orbit torque device, method for fabricating a spin-orbit torque device and method for switching a switchable magnetization of a spin-orbit torque device

2022/2/17

Effective electrical manipulation of a topological antiferromagnet by orbital torques

Nature Communications

2024/1/25

Crystal Symmetry-Dependent In-Plane Hall Effect

Nano Letters

2024/1/3

Tuning Rashba–Dresselhaus effect with ferroelectric polarization at asymmetric heterostructural interface

Materials Horizons

2024

Symmetry breaking for current-induced magnetization switching

2023/6/1

Manipulation of the Topological Ferromagnetic State in a Weyl Semimetal by Spin–Orbit Torque

Nano Letters

2023/4/12

Interface-engineered ferroelectricity of epitaxial Hf0.5Zr0.5O2 thin films

Nature Communications

2023/3/30

Efficient Spin–Orbit Torque Switching in a Perpendicularly Magnetized Heusler Alloy MnPtGe Single Layer

ACS nano

2023/3/21

A low-power Si: HfO2 ferroelectric tunnel memristor for spiking neural networks

Nano Energy

2023/3/1

Quasi-two-dimensional magnetic properties in atomic layer resolved superlattices

Physical Review B

2023/2/27

Strain-Driven Solid–Solid Crystal Conversion in Chiral Hybrid Pseudo-Perovskites with Paramagnetic-to-Ferromagnetic Transition

Journal of the American Chemical Society

2023/2/2

Anisotropic Melting Path of Charge‐Ordering Insulator in LSMO/STO Superlattice

Advanced Science

2023/2

In-plane charged domain walls with memristive behaviour in a ferroelectric film

Nature

2023/1/26

Interfacial antiferromagnetic phase induced two-step magnetization reversal in PbZr0. 52Ti0. 48O3/La0. 67Sr0. 33MnO3 superlattices

Journal of Alloys and Compounds

2023/1/15

A review of Mott insulator in memristors: The materials, characteristics, applications for future computing systems and neuromorphic computing

2023/1

Enhancement of Out‐of‐plane Spin‐orbit Torque by Interfacial Modification

Advanced Materials

2023

Highly Energy-Efficient Spin Current Generation in SrIrO3 by Manipulating the Octahedral Rotation

ACS Applied Materials & Interfaces

2023/12/20

Large Electromechanical Response in a Polycrystalline Alkali-Deficient (K,Na)NbO3 Thin Film on Silicon

Nano Letters

2023/11/27

Anomalous spin current anisotropy in a noncollinear antiferromagnet

Nature Communications

2023/9/21

See List of Professors in Jingsheng Chen University(National University of Singapore)

Co-Authors

academic-engine