Jun Mao 毛俊

About Jun Mao 毛俊

Jun Mao 毛俊, With an exceptional h-index of 48 and a recent h-index of 42 (since 2020), a distinguished researcher at Harbin Institute of Technology, specializes in the field of Thermoelectric Cooling, Thermoelectric Materials, Energy Materials, Nano Materials, Band Model Calculation.

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

Boosting room-temperature thermoelectric performance of Mg3Sb1. 5Bi0. 5 material through breaking the contradiction between carrier concentration and carrier mobility

Realizing a Superior Conversion Efficiency of≈ 11.3% in the Group IV‐VI Thermoelectric Module

Intensified Phonon Scattering in ZrCoBi Half-Heusler by Noble Metals Doping

Multiscale Phonon Scattering for Ultra‐Low Thermal Conductivity in Co‐Doped ZrCoBi Half‐Heusler

Self-doping enhancing thermoelectric properties of GeTe thin films

Scalable and Tunable PEDOT: PSS Emitter for Thermal Camouflage

Improvement of the Thermoelectric Properties of p-Type Mg3Sb2 by Mg-Site Double Substitution

Single-crystalline Mg3Sb2-xBix-based thermoelectric materials

Jun Mao 毛俊 Information

University

Position

(Shenzhen)

Citations(all)

7951

Citations(since 2020)

6934

Cited By

3514

hIndex(all)

48

hIndex(since 2020)

42

i10Index(all)

78

i10Index(since 2020)

78

Email

University Profile Page

Google Scholar

Jun Mao 毛俊 Skills & Research Interests

Thermoelectric Cooling

Thermoelectric Materials

Energy Materials

Nano Materials

Band Model Calculation

Top articles of Jun Mao 毛俊

Boosting room-temperature thermoelectric performance of Mg3Sb1. 5Bi0. 5 material through breaking the contradiction between carrier concentration and carrier mobility

Acta Materialia

2024/2/15

Realizing a Superior Conversion Efficiency of≈ 11.3% in the Group IV‐VI Thermoelectric Module

Small

2024/2/11

Intensified Phonon Scattering in ZrCoBi Half-Heusler by Noble Metals Doping

ACS Applied Materials & Interfaces

2024/1/9

Multiscale Phonon Scattering for Ultra‐Low Thermal Conductivity in Co‐Doped ZrCoBi Half‐Heusler

Advanced Functional Materials

2024

Self-doping enhancing thermoelectric properties of GeTe thin films

Applied Physics Letters

2024/1/1

Scalable and Tunable PEDOT: PSS Emitter for Thermal Camouflage

Advanced Optical Materials

2023/8/17

Improvement of the Thermoelectric Properties of p-Type Mg3Sb2 by Mg-Site Double Substitution

Inorganic Chemistry

2024/4/30

Single-crystalline Mg3Sb2-xBix-based thermoelectric materials

Cell Reports Physical Science

2024/3/20

CALPHAD accelerated design of advanced full-Zintl thermoelectric device

Nature Communications

2024/2/17

Identifying the effect of Ni solubility on the thermoelectric properties of HfNiSn-based half-Heuslers

Acta Materialia

2023/1/1

Anharmonicity of soft optical phonons as the origin of low lattice thermal conductivity in SrAgSb

Physical Review B

2023/11/29

Advancing thermoelectric materials discovery through semi-supervised learning and high-throughput calculations

Applied Physics Letters

2023/11/13

Encapsulated Ag2Se-based flexible thermoelectric generator with remarkable performance

Materials Today Physics

2023/11/7

Revealing the Chemical Instability of Mg3Sb2–xBix-Based Thermoelectric Materials

ACS Applied Materials & Interfaces

2023/10/20

High-Selectivity Planar Thermal Emitter with a Stable Temperature over 1400 K for a Thermophotovoltaic System

ACS Applied Materials & Interfaces

2023/10/16

Characterizing the thermoelectric cooling performance across a broad temperature range

Review of Scientific Instruments

2023/10/1

Strong acoustic-optical phonon coupling in high-performance thermoelectric material Bi0. 5Sb1. 5Te3

Materials Today Physics

2023/9/1

PEDOT: PSS: smart infrared rewritable materials

Advanced Functional Materials

2023/8

See List of Professors in Jun Mao 毛俊 University(Harbin Institute of Technology)

Co-Authors

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