Weijun Luo, Ph.D.

Boston University

Research Interests

Quantum information science
First principle calculations
Applied machine learning
Physical Chemistry
Optical spectroscopy
Mechanical Engineering
Mechanics of Materials
Electrical and Electronic Engineering
Bioengineering
Electrochemistry
Condensed Matter Physics
Biomaterials
Electronic, Optical and Magnetic Materials
Physical and Theoretical Chemistry
Computer Science Applications
Materials Chemistry
Ceramics and Composites

About

Based in Boston, MA, I am a recent PhD graduate in Physical Chemistry from Boston University with experience across multiple disciplines such as mathematics, statistics, physics, and chemistry. My Ph.D. research focused on the spectroscopy studies of 2D quantum materials.

Publications

Probing the Domain Architecture in 2D α-Mo2 C via Polarized Raman Spectroscopy

Advanced Materials / Jan 07, 2019

Li, T., Luo, W., Kitadai, H., Wang, X., & Ling, X. (2019). Probing the Domain Architecture in 2D α-Mo2 C via Polarized Raman Spectroscopy. Advanced Materials, 31(8), 1807160. Portico. https://doi.org/10.1002/adma.201807160

Thermal sublimation: a scalable and controllable thinning method for the fabrication of few-layer black phosphorus

Nanotechnology / Jun 20, 2017

Luo, W., Yang, R., Liu, J., Zhao, Y., Zhu, W., & Xia, G. (Maggie). (2017). Thermal sublimation: a scalable and controllable thinning method for the fabrication of few-layer black phosphorus. Nanotechnology, 28(28), 285301. https://doi.org/10.1088/1361-6528/aa76ae

Anisotropic Phonon Response of Few‐Layer PdSe 2 under Uniaxial Strain

Advanced Functional Materials / Jul 06, 2020

Luo, W., Oyedele, A. D., Gu, Y., Li, T., Wang, X., Haglund, A. V., Mandrus, D., Puretzky, A. A., Xiao, K., Liang, L., & Ling, X. (2020). Anisotropic Phonon Response of Few‐Layer PdSe 2 under Uniaxial Strain. Advanced Functional Materials, 30(35), 2003215. Portico. https://doi.org/10.1002/adfm.202003215

Anomalous Phonon Modes in Black Phosphorus Revealed by Resonant Raman Scattering

The Journal of Physical Chemistry Letters / May 10, 2018

Wang, X., Mao, N., Luo, W., Kitadai, H., & Ling, X. (2018). Anomalous Phonon Modes in Black Phosphorus Revealed by Resonant Raman Scattering. The Journal of Physical Chemistry Letters, 9(11), 2830–2837. https://doi.org/10.1021/acs.jpclett.8b01098

The Stability of Exfolicated FeSe Nanosheets During in-air Device Fabrication Processes

IEEE Transactions on Nanotechnology / Jan 01, 2019

Yang, R., Luo, W., Chi, S., Bonn, D., & Xia, G. M. (2019). The Stability of Exfolicated FeSe Nanosheets During in-air Device Fabrication Processes. IEEE Transactions on Nanotechnology, 18, 37–41. https://doi.org/10.1109/tnano.2018.2877524

Anisotropic ElectronPhonon Interactions in Angle-Resolved Raman Study of Strained Black Phosphorus

Anisotropic ElectronPhonon Interactions in Angle-Resolved Raman Study of Strained Black Phosphorus. (n.d.). https://doi.org/10.1021/acsnano.8b06940.s001

Defect-engineered localized exciton in monolayer WSe2

Conference on Lasers and Electro-Optics / Jan 01, 2022

Maiti, R., Chen, C., Rajendran, A., Yao, K., Bhatt, G., Hone, J., Lipson, M., & Gaeta, A. L. (2022). Defect-engineered localized exciton in monolayer WSe2. Conference on Lasers and Electro-Optics. https://doi.org/10.1364/cleo_si.2022.sm2g.5

Applying Acoustic Emission to Large Format Additive Manufacturing

ASNT 30th Research Symposium Conference Proceedings / Jan 01, 2022

Spencer, R., Nunez, M. G., Saboonchi, H., Godinez-Azcuaga, V., Vaidya, U., Kunc, V., & Hassen, A. A. (2022). Applying Acoustic Emission to Large Format Additive Manufacturing. ASNT 30th Research Symposium Conference Proceedings. https://doi.org/10.32548/rs.2022.015

Phonon-induced multicolor correlations in hBN single-photon emitters

Physical Review B / Jan 09, 2019

Feldman, M. A., Puretzky, A., Lindsay, L., Tucker, E., Briggs, D. P., Evans, P. G., Haglund, R. F., & Lawrie, B. J. (2019). Phonon-induced multicolor correlations in hBN single-photon emitters. Physical Review B, 99(2). https://doi.org/10.1103/physrevb.99.020101

Phonon-induced multi-color correlations in hBN single-photon emitters

Conference on Lasers and Electro-Optics / Jan 01, 2019

Feldman, M. A., Marvinney, C., Puretzky, A., Lindsay, L., Tucker, E., Briggs, D. P., Evans, P. G., Haglund, R. F., & Lawrie, B. J. (2019). Phonon-induced multi-color correlations in hBN single-photon emitters. Conference on Lasers and Electro-Optics. https://doi.org/10.1364/cleo_at.2019.jw3a.6

Charge-transfer-enhanced dd emission in antiferromagnetic NiPS3

Applied Physics Reviews / Dec 01, 2022

Tan, Q., Luo, W., Li, T., Cao, J., Kitadai, H., Wang, X., & Ling, X. (2022). Charge-transfer-enhanced d–d emission in antiferromagnetic NiPS3. Applied Physics Reviews, 9(4), 041406. https://doi.org/10.1063/5.0107065

Charge Separation in Monolayer WSe2 by Strain Engineering: Implications for Strain-Induced Diode Action

ACS Applied Nano Materials / Oct 03, 2022

Chen, Z., Luo, W., Liang, L., Ling, X., & Swan, A. K. (2022). Charge Separation in Monolayer WSe2 by Strain Engineering: Implications for Strain-Induced Diode Action. ACS Applied Nano Materials, 5(10), 15095–15101. https://doi.org/10.1021/acsanm.2c03264

Excitation-Dependent Anisotropic Raman Response of Atomically Thin Pentagonal PdSe2

ACS Physical Chemistry Au / Aug 04, 2022

Luo, W., Oyedele, A. D., Mao, N., Puretzky, A., Xiao, K., Liang, L., & Ling, X. (2022). Excitation-Dependent Anisotropic Raman Response of Atomically Thin Pentagonal PdSe2. ACS Physical Chemistry Au, 2(6), 482–489. https://doi.org/10.1021/acsphyschemau.2c00007

Phase-Controllable Synthesis of Ultrathin Molybdenum Nitride Crystals Via Atomic Substitution of MoS2

Chemistry of Materials / Dec 28, 2021

Gao, H., Cao, J., Li, T., Luo, W., Gray, M., Kumar, N., Burch, K. S., & Ling, X. (2021). Phase-Controllable Synthesis of Ultrathin Molybdenum Nitride Crystals Via Atomic Substitution of MoS2. Chemistry of Materials, 34(1), 351–357. https://doi.org/10.1021/acs.chemmater.1c03712

Contribution of optical phonons to lattice thermal conductivity in complex structural thermal insulation materials

Journal of the European Ceramic Society / Dec 01, 2021

Li, Z., Shi, D., Yang, J., Luo, W., Wan, C., & Pan, W. (2021). Contribution of optical phonons to lattice thermal conductivity in complex structural thermal insulation materials. Journal of the European Ceramic Society, 41(15), 7981–7987. https://doi.org/10.1016/j.jeurceramsoc.2021.07.066

Stress and thermal characterization of 4H-SiC microelectromechanical structures

Materials Letters / Mar 01, 2017

Wells, C., Jiang, J.-Y., Chang, T.-F., Huang, C.-F., Ke, J., Luo, W., Xia, G., Cheong, K. Y., & Zhao, F. (2017). Stress and thermal characterization of 4H-SiC microelectromechanical structures. Materials Letters, 191, 196–199. https://doi.org/10.1016/j.matlet.2016.12.064

Hydrogen diffusion in amorphous ZrO 2

Journal of Non-Crystalline Solids / May 01, 2016

Sheikholeslam, S. A., Luo, W., Grecu, C., Xia, G., & Ivanov, A. (2016). Hydrogen diffusion in amorphous ZrO 2. Journal of Non-Crystalline Solids, 440, 7–11. https://doi.org/10.1016/j.jnoncrysol.2016.02.023

Synthesis of large-scale 2-D MoS2 atomic layers by hydrogen-free and promoter-free chemical vapor deposition

Materials Letters / Apr 01, 2016

Nguyen, H., Huang, C.-F., Luo, W., Xia, G. (Maggie), Chen, Z., Li, Z., Raymond, C., Doyle, D., & Zhao, F. (2016). Synthesis of large-scale 2-D MoS2 atomic layers by hydrogen-free and promoter-free chemical vapor deposition. Materials Letters, 168, 1–4. https://doi.org/10.1016/j.matlet.2015.12.068

Education

American Chemical Society

ACS Reviewer Lab Certificate of Completion, ACS Reviewer Lab

Washington D.C., District of Columbia, United States of America

Boston University

Ph.D., Chemistry

Boston, Massachusetts, United States of America

University of British Columbia

Master of Applied Science, Materials Engineering

Vancouver, British Columbia, Canada

Shanghai Jiao Tong University

PhD Candidate student, School of Materials Science and Engineering / December, 2014

Shanghai

Fudan University

Bachelor of Science, Material Science / June, 2013

Shanghai

Experience

Boston University

Research Fellow / August, 2017Present

The University of British Columbia

December, 2014June, 2017

Join Dr. Luo on NotedSource!
Join Now

At NotedSource, we believe that professors, post-docs, scientists and other researchers have deep, untapped knowledge and expertise that can be leveraged to drive innovation within companies. NotedSource is committed to bridging the gap between academia and industry by providing a platform for collaboration with industry and networking with other researchers.

For industry, NotedSource identifies the right academic experts in 24 hours to help organizations build and grow. With a platform of thousands of knowledgeable PhDs, scientists, and industry experts, NotedSource makes connecting and collaborating easy.

For academic researchers such as professors, post-docs, and Ph.D.s, NotedSource provides tools to discover and connect to your colleagues with messaging and news feeds, in addition to the opportunity to be paid for your collaboration with vetted partners.

Expert Institutions
NotedSource has experts from Stanford University
Expert institutions using NotedSource include Oxfort University
Experts from McGill have used NotedSource to share their expertise
University of Chicago experts have used NotedSource
MIT researchers have used NotedSource
Proudly trusted by
Microsoft uses NotedSource for academic partnerships
Johnson & Johnson academic research projects on NotedSource
ProQuest (Clarivate) uses NotedSource as their industry academia platform
Slamom consulting engages academics for research collaboration on NotedSource
Omnicom and OMG find academics on notedsource
Unilever research project have used NotedSource to engage academic experts