Lei Hu

About Lei Hu

Lei Hu, With an exceptional h-index of 27 and a recent h-index of 23 (since 2020), a distinguished researcher at Tokyo Institute of Technology, specializes in the field of Local Structure, Thermoelectrics, Thermal Conductivity, Magnetism, Synchrotron X-ray techniques.

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

Chemical Diversity for Tailoring Negative Thermal Expansion

Upcycling Silicon Photovoltaic Waste into Thermoelectrics

High thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity

Physical insights on the low lattice thermal conductivity of AgInSe2

Polarization Rotation at Morphotropic Phase Boundary in New Lead-Free Na1/2Bi1/2V1–xTixO3 Piezoceramics

Polarization-and Strain-Mediated Control of Negative Thermal Expansion and Ferroelasticity in BiInO3–BiZn1/2Ti1/2O3

Defect engineering in thermoelectric materials: what have we learned?

High Thermoelectric Performance through Crystal Symmetry Enhancement in Triply Doped Diamondoid Compound Cu2SnSe3

Lei Hu Information

University

Position

___

Citations(all)

2485

Citations(since 2020)

1952

Cited By

1393

hIndex(all)

27

hIndex(since 2020)

23

i10Index(all)

42

i10Index(since 2020)

40

Email

University Profile Page

Google Scholar

Lei Hu Skills & Research Interests

Local Structure

Thermoelectrics

Thermal Conductivity

Magnetism

Synchrotron X-ray techniques

Top articles of Lei Hu

Chemical Diversity for Tailoring Negative Thermal Expansion

2022/3/8

High thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity

Nature communications

2021/8/9

Polarization Rotation at Morphotropic Phase Boundary in New Lead-Free Na1/2Bi1/2V1–xTixO3 Piezoceramics

ACS applied materials & interfaces

2021/1/21

Polarization-and Strain-Mediated Control of Negative Thermal Expansion and Ferroelasticity in BiInO3–BiZn1/2Ti1/2O3

Chemistry of Materials

2021

High Thermoelectric Performance through Crystal Symmetry Enhancement in Triply Doped Diamondoid Compound Cu2SnSe3

Advanced Energy Materials

2021/11

Crystal Structure and Atomic Vacancy Optimized Thermoelectric Properties in Gadolinium Selenides

Chemistry of Materials

2020/11/26

Anharmonicity and scissoring modes in the negative thermal expansion materials and

Physical Review B

2020/2/21

Origin of High Thermoelectric Performance in Earth-Abundant Phosphide–Tetrahedrite

ACS Applied Materials & Interfaces

2020/1/29

Preparation, Structure, and enhanced thermoelectric properties of Sm-doped BiCuSeO oxyselenide

Materials & Design

2020/1/5

Tailoring the phase transition temperature to achieve high-performance cubic GeTe-based thermoelectrics

Journal of Materials Chemistry A

2020

See List of Professors in Lei Hu University(Tokyo Institute of Technology)

Co-Authors

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