Kaijian XING

Kaijian XING

Monash University

H-index: 11

Oceania-Australia

About Kaijian XING

Kaijian XING, With an exceptional h-index of 11 and a recent h-index of 11 (since 2020), a distinguished researcher at Monash University, specializes in the field of Condensed Matter Physics, Diamond, 2D materials, Spintronics.

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

TbMn6Sn6, a tuneable quantum magnet at room temperatures

Quantum interference effects in a 3D topological insulator with high-temperature bulk-insulating behavior

Anomalous Hall effect in Nd-doped Bi 1.1 Sb 0.9 STe 2 topological insulator single crystals

Non-Drude THz conductivity of graphene due to structural distortions

P-Type Ohmic Contact to Monolayer WSe2 Field-Effect Transistors Using High-Electron Affinity Amorphous MoO3

High-field magnetotransport studies of surface-conducting diamonds

Hydrogen-Terminated Diamond MOSFETs Using Ultrathin Glassy Ga2O3 Dielectric Formed by Low-Temperature Liquid Metal Printing Method

Highly Sensitive NO2 Gas Sensors Based on MoS2@MoO3 Magnetic Heterostructure

Kaijian XING Information

University

Position

___

Citations(all)

334

Citations(since 2020)

331

Cited By

84

hIndex(all)

11

hIndex(since 2020)

11

i10Index(all)

13

i10Index(since 2020)

13

Email

University Profile Page

Google Scholar

Kaijian XING Skills & Research Interests

Condensed Matter Physics

Diamond

2D materials

Spintronics

Top articles of Kaijian XING

TbMn6Sn6, a tuneable quantum magnet at room temperatures

Bulletin of the American Physical Society

2024/3/7

Quantum interference effects in a 3D topological insulator with high-temperature bulk-insulating behavior

Applied Physics Reviews

2024/3/1

Anomalous Hall effect in Nd-doped Bi 1.1 Sb 0.9 STe 2 topological insulator single crystals

Physical Chemistry Chemical Physics

2024

Non-Drude THz conductivity of graphene due to structural distortions

arXiv preprint arXiv:2310.06180

2023/10/9

P-Type Ohmic Contact to Monolayer WSe2 Field-Effect Transistors Using High-Electron Affinity Amorphous MoO3

ACS Applied Electronic Materials

2022/11/9

High-field magnetotransport studies of surface-conducting diamonds

Physical Review B

2022/6/17

Kaijian Xing
Kaijian Xing

H-Index: 5

Golrokh Akhgar
Golrokh Akhgar

H-Index: 6

Hydrogen-Terminated Diamond MOSFETs Using Ultrathin Glassy Ga2O3 Dielectric Formed by Low-Temperature Liquid Metal Printing Method

ACS Applied Electronic Materials

2022/4/28

Highly Sensitive NO2 Gas Sensors Based on MoS2@MoO3 Magnetic Heterostructure

Nanomaterials

2022/4/11

Large-sized α-MoO3 layered single crystals for superior NO2 gas sensing

Applied Surface Science

2022/6/1

Defects, band bending and ionization rings in MoS2

Journal of Physics: Condensed Matter

2022/2/24

Correlation between electronic micro-roughness and surface topography in two-dimensional surface conducting hydrogen-terminated diamond

Diamond and Related Materials

2021/6/1

Kaijian Xing
Kaijian Xing

H-Index: 5

Golrokh Akhgar
Golrokh Akhgar

H-Index: 6

Ultrasensitive NO2 Gas Sensors Based on Layered α‐MoO3 Nanoribbons

Advanced Materials Technologies

2022/4

Precise Layer-Dependent Electronic Structure of MBE-Grown PtSe

Advanced Electronic Materials

2021/9

Periodic nanostructures: preparation, properties and applications

Chemical Society Reviews

2021/4

Surface Transfer Doping of Diamond Using Solution-Processed Molybdenum Trioxide

Carbon

2021/4/30

Palladium forms Ohmic contact on hydrogen-terminated diamond down to 4 K

Applied Physics Letters

2020/3/16

Bi-stable electronic states of cobalt phthalocyanine molecules on two-dimensional vanadium diselenide

Applied Materials Today

2020/3/1

Engineering the Two-Dimensional Hole Gas on Hydrogen-Terminated Diamond by Transition Metal Oxides Towards Diamond Surface Electronics

2020/1/1

Kaijian Xing
Kaijian Xing

H-Index: 5

High-electron-affinity oxide V2O5 enhances surface transfer doping on hydrogen-terminated diamond

Diamond and Related Materials

2020/10/1

Kaijian Xing
Kaijian Xing

H-Index: 5

Ultrasonic spray pyrolysis of antimony‐doped tin oxide transparent conductive coatings

Advanced Materials Interfaces

2020

See List of Professors in Kaijian XING University(Monash University)

Co-Authors

academic-engine