Chongjian Zhou

About Chongjian Zhou

Chongjian Zhou, With an exceptional h-index of 24 and a recent h-index of 22 (since 2020), a distinguished researcher at Seoul National University, specializes in the field of Thermoelectric, Chalcogenides, Nanostructures, RTG.

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

Metavalent Bonding in Cubic SnSe Alloys Improves Thermoelectric Properties over a Broad Temperature Range

Atom probe tomography: a local probe for chemical bonds in solids

Enhancing photo and X-ray detection performance of (BDA) CsPb2Br7 perovskite single crystals by removing surface defects

Dual‐Site Doping and Low‐Angle Grain Boundaries Lead to High Thermoelectric Performance in N‐Type Bi2S3

Oxide semiconductors for thermoelectric: The challenges and future

Heavy-to-light electron transition enabling real-time spectra detection of charged particles by a biocompatible semiconductor

Entropy engineering enabled atomically dispersed Cu doping leading to an exceptionally high thermoelectric figure of merit in n-type lead chalcogenides

Improved Charge Carrier Transport Across Grain Boundaries in N‐type PbSe by Dopant Segregation

Chongjian Zhou Information

University

Position

Institute for Basic Science

Citations(all)

2140

Citations(since 2020)

1816

Cited By

881

hIndex(all)

24

hIndex(since 2020)

22

i10Index(all)

31

i10Index(since 2020)

29

Email

University Profile Page

Google Scholar

Chongjian Zhou Skills & Research Interests

Thermoelectric

Chalcogenides

Nanostructures

RTG

Top articles of Chongjian Zhou

Metavalent Bonding in Cubic SnSe Alloys Improves Thermoelectric Properties over a Broad Temperature Range

Advanced Functional Materials

2024/4/4

Atom probe tomography: a local probe for chemical bonds in solids

arXiv preprint arXiv:2403.04093

2024/3/6

Enhancing photo and X-ray detection performance of (BDA) CsPb2Br7 perovskite single crystals by removing surface defects

Journal of Alloys and Compounds

2024/3/5

Dual‐Site Doping and Low‐Angle Grain Boundaries Lead to High Thermoelectric Performance in N‐Type Bi2S3

Advanced Functional Materials

2024/3

Oxide semiconductors for thermoelectric: The challenges and future

Journal of the American Ceramic Society

2024/3

Heavy-to-light electron transition enabling real-time spectra detection of charged particles by a biocompatible semiconductor

Nature Communications

2024/2/6

Entropy engineering enabled atomically dispersed Cu doping leading to an exceptionally high thermoelectric figure of merit in n-type lead chalcogenides

Energy & Environmental Science

2024

Improved Charge Carrier Transport Across Grain Boundaries in N‐type PbSe by Dopant Segregation

Small Science

2024

Deformation Mechanisms of Inorganic Thermoelectric Materials with Plasticity

2024/1

Near-Net-Shaped Growth of Inch-Sized MAPbBr3 Bulk Crystal by the Space-Confined Seeded Solution Method

Crystal Growth & Design

2023/12/11

Enhanced figure of merit for famatinite Cu3SbSe4 via band structure tuning and hierarchical architecture

Journal of Materiomics

2023/11/1

Decorated dislocations lead to dynamically optimized thermoelectric performance in N-type PbTe

Materials Today Physics

2023/9/1

High‐Performance Industrial‐Grade CsPbBr3 Single Crystal by Solid–Liquid Interface Engineering

Advanced Science

2023/8

Dynamic Phase Transition Leading to Extraordinary Plastic Deformability of Thermoelectric SnSe2 Single Crystal

Advanced Energy Materials

2023/7

Doping by design: enhanced thermoelectric performance of GeSe alloys through metavalent bonding

Advanced Materials

2023/5

Strong charge carrier scattering at grain boundaries of PbTe caused by the collapse of metavalent bonding

Nature Communications

2023/2/9

Yuan Yu
Yuan Yu

H-Index: 14

Chongjian Zhou
Chongjian Zhou

H-Index: 16

Engineering an atomic-level crystal lattice and electronic band structure for an extraordinarily high average thermoelectric figure of merit in n-type PbSe

Energy & Environmental Science

2023

Enhancing the thermoelectric performance of β-Zn4Sb3 via progressive incorporation of Zn interstitials

Nano Energy

2022/12/15

Atomic Level Defect Structure Engineering for Unusually High Average Thermoelectric Figure of Merit in n‐Type PbSe Rivalling PbTe

Advanced Science

2022/12

Dynamic doping and Cottrell atmosphere optimize the thermoelectric performance of n-type PbTe over a broad temperature interval

Nano Energy

2022/10/1

See List of Professors in Chongjian Zhou University(Seoul National University)

Co-Authors

academic-engine