Min Ouyang, Ph.D.

Affiliations: 
Physics University of Maryland, College Park, College Park, MD 
 2001 Harvard University, Cambridge, MA, United States 
Area:
nanoscience
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"Min Ouyang"
Mean distance: 7.85
 
SNBCP
Cross-listing: Chemistry Tree

Parents

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Charles M. Lieber grad student 2001 Harvard (Chemistry Tree)
 (Carbon nanotubes: Fundamental electronic properties and device applications.)

Children

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Brad R. Conrad grad student 2004-2009 University of Maryland (Chemistry Tree)
Kwan Lee grad student 2011 University of Maryland (Chemistry Tree)
Lin Weng grad student 2013 University of Maryland (Chemistry Tree)
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Publications

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Qi J, Gao Y, Jia H, et al. (2020) Force-Activated Isomerization of a Single Molecule. Journal of the American Chemical Society
Qian K, Gao L, Chen X, et al. (2020) Air-Stable Monolayer Cu Se Exhibits a Purely Thermal Structural Phase Transition. Advanced Materials (Deerfield Beach, Fla.). e1908314
Wu L, Shi J, Zhou Z, et al. (2020) InSe/hBN/graphite heterostructure for high-performance 2D electronics and flexible electronics Nano Research. 13: 1127-1132
Chen H, Zhang XL, Zhang YY, et al. (2019) Atomically precise, custom-design origami graphene nanostructures. Science (New York, N.Y.). 365: 1036-1040
Wang PP, Qiao Q, Zhu Y, et al. (2018) Colloidal Binary Supracrystals with Tunable Structural Lattices. Journal of the American Chemical Society
Yu SJ, Ouyang M. (2018) Coherent Discriminatory Modal Manipulation of Acoustic Phonons at the Nanoscale. Nano Letters
Wang PP, Yu SJ, Ouyang M. (2017) Assembled Suprastructures of Inorganic Chiral Nanocrystals and Hierarchical Chirality. Journal of the American Chemical Society
Wang PP, Yu SJ, Govorov AO, et al. (2017) Cooperative expression of atomic chirality in inorganic nanostructures. Nature Communications. 8: 14312
Gong J, Steinsultz N, Ouyang M. (2016) Nanodiamond-based nanostructures for coupling nitrogen-vacancy centres to metal nanoparticles and semiconductor quantum dots. Nature Communications. 7: 11820
Yu S, Zhang J, Tang Y, et al. (2015) Engineering Acoustic Phonons and Electron-Phonon Coupling by the Nanoscale Interface. Nano Letters
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