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Jiawei Zhou

Massachusetts Institute of Technology · US
Area of research
Materials Chemistry · Civil and Structural Engineering
Research interest
Research interests include Materials science, Phonon, Condensed matter physics, Thermoelectric effect, Thermal conductivity, and Thermoelectric materials.
h-index
citations
6,326
works
34
NIH funding
primary concept
email

Recent publications

Defects vibrations engineering for enhancing interfacial thermal transport in polymer composites
Science Advances 2025cited by 35position: middledoi
High ambipolar mobility in cubic boron arsenide
Science 2022cited by 119position: middledoi
Mobility enhancement in heavily doped semiconductors via electron cloaking
Nature Communications 2022cited by 52position: firstdoi
Phonon-engineered extreme thermal conductivity materials
Nature Materials 2021cited by 756position: middledoi
Self-Perpetuating Carbon Foam Microwave Plasma Conversion of Hydrocarbon Wastes into Useful Fuels and Chemicals
Environmental Science & Technology 2021cited by 67position: middledoi
Stretchable Anti‐Fogging Tapes for Diverse Transparent Materials
Advanced Functional Materials 2021cited by 67position: middledoi
Direct observation of large electron–phonon interaction effect on phonon heat transport
Nature Communications 2020cited by 117position: firstdoi
Dynamic intermolecular interactions through hydrogen bonding of water promote heat conduction in hydrogels
Materials Horizons 2020cited by 74position: firstdoi
Discovery of TaFeSb-based half-Heuslers with high thermoelectric performance
Nature Communications 2019cited by 365position: middledoi
Nanostructured polymer films with metal-like thermal conductivity
Nature Communications 2019cited by 355position: middledoi
Effect of electron-phonon interaction on lattice thermal conductivity of SiGe alloys
Applied Physics Letters 2019cited by 53position: middledoi
Advances in thermoelectrics
Advances In Physics 2018cited by 561position: middledoi
Deep defect level engineering: a strategy of optimizing the carrier concentration for high thermoelectric performance
Energy & Environmental Science 2018cited by 297position: middledoi
Molecular engineered conjugated polymer with high thermal conductivity
Science Advances 2018cited by 246position: middledoi
Phonon localization in heat conduction
Science Advances 2018cited by 174position: middledoi
Large thermoelectric power factor from crystal symmetry-protected non-bonding orbital in half-Heuslers
Nature Communications 2018cited by 166position: firstdoi
Simultaneously high electron and hole mobilities in cubic boron-V compounds: BP, BAs, and BSb
Physical review. B./Physical review. B 2018cited by 102position: middledoi
Electron mean-free-path filtering in Dirac material for improved thermoelectric performance
Proceedings of the National Academy of Sciences 2018cited by 77position: middledoi
Self-compensation induced vacancies for significant phonon scattering in InSb
Nano Energy 2018cited by 43position: middledoi
Tuning the carrier scattering mechanism to effectively improve the thermoelectric properties
Energy & Environmental Science 2017cited by 440position: middledoi
Manipulation of ionized impurity scattering for achieving high thermoelectric performance in n-type Mg <sub>3</sub> Sb <sub>2</sub> -based materials
Proceedings of the National Academy of Sciences 2017cited by 358position: middledoi
A Microporous and Naturally Nanostructured Thermoelectric Metal-Organic Framework with Ultralow Thermal Conductivity
Joule 2017cited by 245position: middledoi
First-principles mode-by-mode analysis for electron-phonon scattering channels and mean free path spectra in GaAs
Physical review. B./Physical review. B 2017cited by 165position: middledoi
Phonon Hydrodynamic Heat Conduction and Knudsen Minimum in Graphite
Nano Letters 2017cited by 127position: middledoi
Thermoelectric Properties of n-type ZrNiPb-Based Half-Heuslers
Chemistry of Materials 2017cited by 84position: middledoi
Nonperturbative Quantum Nature of the Dislocation–Phonon Interaction
Nano Letters 2017cited by 73position: middledoi
Ab initio study of electron mean free paths and thermoelectric properties of lead telluride
Materials Today Physics 2017cited by 67position: middledoi
First-principles calculations of thermal, electrical, and thermoelectric transport properties of semiconductors
Semiconductor Science and Technology 2016cited by 77position: firstdoi
Significant Reduction of Lattice Thermal Conductivity by the Electron-Phonon Interaction in Silicon with High Carrier Concentrations: A First-Principles Study
Physical Review Letters 2015cited by 330position: middledoi
<i>Ab initio</i>study of electron-phonon interaction in phosphorene
Physical Review B 2015cited by 219position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Gang Chen · Xi'an Railway Survey and Design Institute32 papers (2015–2022)Zhifeng Ren · Massachusetts Institute of Technology10 papers (2015–2022)Jun Mao · University of Houston9 papers (2017–2022)Bolin Liao · Massachusetts Institute of Technology8 papers (2015–2018)Mingda Li · IIT@MIT8 papers (2017–2025)Te‐Huan Liu · Massachusetts Institute of Technology7 papers (2017–2019)Zhiwei Ding · National University of Singapore7 papers (2017–2022)Qichen Song · Massachusetts Institute of Technology7 papers (2017–2022)Bai Song · Massachusetts Institute of Technology6 papers (2017–2020)Zihang Liu · University of Houston6 papers (2017–2019)Hangtian Zhu · Pennsylvania State University5 papers (2017–2022)David J. Singh · Oak Ridge National Laboratory5 papers (2017–2019)M. S. Dresselhaus · Massachusetts Institute of Technology4 papers (2015–2018)Samuel Huberman · Massachusetts Institute of Technology4 papers (2015–2018)Ran He · University of Houston4 papers (2017–2019)Yanfei Xu · Massachusetts Institute of Technology4 papers (2018–2025)Zhang Jiang · Shanghai University3 papers (2018–2025)Bo Qiu · Massachusetts Institute of Technology3 papers (2015–2015)Jifeng Sun · Georgia Institute of Technology3 papers (2017–2019)Vazrik Chiloyan · Massachusetts Institute of Technology3 papers (2015–2017)