Publications

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51. H. Chen el al., Atomically Precise Custom-Design Origami Graphene Nanostructures. Science 365, 1036 (2019).
(related news article: Using a Scanning Tunneling Microscope to Make Origami Structures out of Graphene.
https://phys.org/news/2019-09-scanning-tunneling-microscope-origami-graphene.html).


50. X. A. Zhang*, S. Yu*, B. Xu*, M. Li, Z. Peng, Y. Wang, S. Deng, X. Wu, Z. Wu, M. Ouyang & Y. Wang, Dynamic Gating of Infrared Radiation in a Textile. Science 363, 619 (2019).
*Contributed equally to this work.
(related news article: The National Nanotechnology Initiative Supplement to the President's 2020 Budget.
https://www.nano.gov/sites/default/files/pub_resource/NNI-FY20-Budget-Supplement-Final.pdf).
(related news article: Scientists Develop Air-Conditioning Clothes that can Regulate Temperature.
https://www.ibtimes.sg/scientists-develop-air-conditioning-clothes-that-can-regulate-temperature-29290).


49. S.-J. Yu & M. Ouyang, Coherent Discriminatory Modal Manipulation of Acoustic Phonons at the Nanoscale. Nano Lett. 18, 1124 (2018).


48. P.-P. Wang, Q. Qiao, Y. Zhu & M. Ouyang, Colloidal Binary Supracrystals with Tunable Structural Lattices. J. Am. Chem. Soc. 140, 9095 (2018).
(related news article: Stay Tuned: Making Customizable Colloidal Binary Supracrystals.
https://pubs.acs.org/doi/pdfplus/10.1021/jacs.8b07695).


47. G. Li el al., Stable Silicene in Graphene/Silicene Van der Waals Heterostructures. Adv. Mater. 30, 1804650 (2018).


46. P.-P. Wang, S.-J. Yu, A. O. Govorov & M. Ouyang, Cooperative Expression of Atomic Chirality in Inorganic Nanostructures. Nat. Commun. 8, 14312 (2017).
(related news article: Stacked Nanocrystals Offer a New Twist on Handedness.
https://umdphysics.umd.edu/about-us/news/research-news/1257-stacked-nanocrystals-offer-a-new-twist-on-handedness.html).


45. J. Ren, H. Guo, J. Pan, Y.-F. Zhang, Y. Yang, X. Wu, S. Du, M. Ouyang & H.-J. Gao, Interatomic Spin Coupling in Manganese Clusters Registered on Graphene. Phys. Rev. Lett. 119, 176806 (2017).


44. P.-P. Wang, S.-J. Yu & M. Ouyang, Assembled Suprastructures of Inorganic Chiral Nanocrystals and Hierarchical Chirality. J. Am. Chem. Soc. 139, 6070 (2017).


43. J. Gong, N. Steinsultz & M. Ouyang, Nanodiamond-Based Nanostructures for Coupling Nitrogen-Vacancy Centres to Metal Nanoparticles and Semiconductor Quantum Dots. Nat. Commun. 7, 11820 (2016).
(related news article: Featured Image in the Week.
https://www.facebook.com/naturecommunications/photos/this-weeks-featured-image-nitrogen-vacancy-centres-in-diamond-serve-as-quantum-e/1078236732239737/).


42. L. Liu el al. Revealing the Atomic Site-Dependent g Factor within a Single Magnetic Molecule via the Extended Kondo Effect. Phys. Rev. Lett. 114, 126601 (2015). (Cover)


41. G. Li el al. Role of Cooperative Interactions in the Intercalation of Heteroatoms between Graphene and a Metal Substrate. J. Am. Chem. Soc. 137, 7099 (2015).


40. S. Yu, J. Zhang, Y. Tang & M. Ouyang, Engineering Acoustic Phonons and Elecgtron-Phonon Coupling by the Nanoscale Interface. Nano Lett. 15, 6282 (2015).


39. L. Weng, H. Zhang, A. O. Govorov & M. Ouyang, Hierarchical Synthesis of Non-Centrosymmetric Hybrid Nanostructures and Enabled Plasmon-Driven Photocatalysis. Nat. Commun. 5, 4799 (2014).
(related news article: New Symnthesis Method May Shape Future of Nanostructures, Clean Energy.
https://www.sciencedaily.com/releases/2014/09/140902151214.htm).


38. Q. Zhao el al. Controlling Structural Symmetry of a Hybrid Nanostructure and its Effect on Efficient Photocatalytic Hydrogen. Adv. Mater. 26, 1387 (2014).


37. L. Liu el al. Reversible Single Spin Control of Individual Magnetic Molecule by Hydrogen Atom Adsorption. Scientific Reports. 3, 1210 (2013).


36. H. Cun el al. Tuning Structural and Mechanical Properties of Two-Dimensional Molecular Crystals: The Roles of Carbon Side Chains. Nano Lett. 12, 1229 (2012).


35. J. Zhang, Y. Tang, K. Lee & M. Ouyang, Tailoring Light-Matter-Spin Interactions in Colloidal Hetero-Nanostructures. Nature 466, 91 (2010).
(related news article: New Type of Light-Matter Interaction: Advance in Quantum Computing and Energy Conversion Technology.
http://www.sciencedaily.com/releases/2010/07/100702152409.htm).


34. J. Zhang, Y. Tang, K. Lee & M. Ouyang, Nonepitaxial Growth of Hybrid Core-Shell Nanostructures with Large Lattice Mismatches. Science 327, 1634 (2010).
(related news article: Chemical Thermodynamics Overtakes Epitaxy.
http://www.computescotland.com/3191.php)


33. Y. Tang, A.F. Goncharov, V.V. Struzhkin, R.J. Hemley & M. Ouyang, Spin of Semiconductor Quantum Dots under Hydrostatic Pressure. Nano Lett. 10, 358 (2010).


32. J. Zhang, Y. Tang, L. Weng & M. Ouyang, Versatile Strategy for Precisely Tailored Core@Shell Nanostructures with Single Shell Layer Accuracy: the Case of Metallic Shell. Nano Lett. 9, 4061 (2009).


31. Y. Zhang, Y. Tang, K. Lee & M. Ouyang, Catalytic and Catalyst-free Synthesis of CdSe Nanostructures with Single-Source Molecular Precursor and Related Device Application. Nano Lett. 9, 437 (2009).


30. K. Lee, Y. Tang & M. Ouyang, Self-ordered, Controlled Structure Nanoporous Membranes Using Constant Current Anodization. Nano Lett. 8, 4624 (2008).


29. Y. Tang & M. Ouyang, Tailoring Properties and Functionalities of Metal Nanoparticles through Crystallinity Engineering. Nature Materials 6, 754 (2007).
(related News & Views article: Is perfect better? Nature Materials 6, 716 (2007)).


28. J. Berezovsky, M. Ouyang, F. Meier, D.D. Awschalom, D. Battaglia and X. Peng, Spin Dynamics and Level Structure of Quantum-Dot Quantum Wells, Phys.Rev. B71, 081309 (2005).


27. M. Ouyang & D.D. Awschalom, Organic Growth in Spintronics, Physics World 17, 21 (2004).


26. M. Ouyang & D.D. Awschalom, Coherent Spin Transfer between Molecularly Bridged Quantum Dots. Science 301, 1074 (2003).
(related news article: Quantum dots chemically wired for spintronics, Science 301, 580 (2003)).


25. M. Ouyang, J.-L. Huang & C.M. Lieber, Fundamental Electronic Properties and Applications of Single-Walled Carbon Nanotubes. Acc.Chem.Res. 35, 1018 (2002) (invited review).


24. M. Ouyang, J.-L. Huang & C.M. Lieber, Scanning Tunneling Microscopy Studies of the One-Dimensional Electronic Properties of Single-Walled Carbon Nanotubes. Annu.Rev.Phys.Chem. 53, 091801 (2002) (invited review).


23. M. Ouyang, J.-L. Huang & C.M. Lieber, Determination of One Dimensional Energy Dispersion of Single-Walled Carbon Nanotubes by Resonant Electron Scattering. Phys.Rev.Lett. 88, 066804 (2002).


22. M. Ouyang, J.-L. Huang, C.L. Cheung & C.M. Lieber, Atomically Resolved Single-Walled Carbon Nanotube Intramolecular Junctions. Science 291, 97 (2001).


21. M. Ouyang, J.-L. Huang, C.L. Cheung & C.M. Lieber, Energy Gaps in “Metallic” Single-Walled Carbon Nanotubes. Science 292, 702 (2001).
(related news article: Burn and Interrogate, Science 292, 650 (2001)).


20. J.T. Hu*, M. Ouyang*, P.D. Yang & C.M. Lieber, Controlled Growth and Electrical Properties of Heterojunctions of Carbon Nanotubes and Silicon Nanowires. Nature 399, 48 (1999).  
*Contributed equally to this work


19. T.W. Odom, J.-L. Huang, P. Kim, M. Ouyang, and C.M. Lieber, Scanning Tunneling Microscopy and Spectroscopy Studies of Single Wall Carbon Nanotubes, J. Mat. Res. 13, 2380 (1998).


18. M. Tang, Y. Chen, J. Wang, M. Ouyang, S.M. Cai, Z.F. Liu, and B.H. Loo, Combined Electric Field and Near-Field Scanning Optical Microscopy: Modification of Silicon Surfaces, Appl. Phys. A68, 177 (1999).


17. S.M. Hou, M. Ouyang, L. Lin, Z.Q. Xue, W.J. Yang, H.Y. Chen, and H.X. Zhang, A Novel Organic Complex Thin Film for Rewritable Optical Storage, J. Mat. Res. 14, 1634 (1999).


16. M. Ouyang, S.M. Hou, L. Lin, W.M. Liu, Z.Q. Xue, Q.D. Wu, Z.J. Xia, and Y.H. Zou, Structural Characteristics, Electrical Bistable Properties and Optical transient Response of Metal Clusters Embedded in Organic Matrix (I), Acta Physica Sinica 5 , 802 (1998).


15. M. Ouyang, S.M. Hou, L. Lin, W.M. Liu, Z.Q. Xue, Q.D. Wu, Z.J. Xia, and Y.H. Zou, Structural Characteristics, Electrical Bistable Properties and Optical transient Response of Metal Clusters Embedded in Organic Matrix (II), Acta Physica Sinica 5 , 829 (1998).


14. M. Tang, M. Ouyang, S.M. Cai, Z.F. Liu, and Z.Q. Xue, Investigating Anisotropic Mico-crystal Using Polarization Contrast in Scanning Near-Field Optical Microscope, Chemical Journal of Chinese Universities-Chinese 19, 1045 (1998).


13. S.M. Hou, M. Ouyang, H.F. Chen, W.M. Liu, Z.Q. Xue, Q.D. Wu, H.X. Zhang, H.J. Gao, and S.J. Pang, Fractal Structure in the Silver Oxide Thin Film, Thin Solid Films 315, 322 (1998).


12. M. Tang, M. Ouyang, S.M. Cai, Z.F. Liu, and Z.Q. Xue, Nanolithography Using Scanning Near-Field Optical Microscopy, J.Lanzhou Univ. 33, 40 (1998).


11. M. Tang, M. Ouyang, S.M. Cai, Z.F. Liu, and Z.Q. Xue, Observation of Nano-sized Samples Using Scanning Near-Field Optical Microscope (SNOM), J.Lanzhou Univ. 33, 43 (1998).


10. M. Tang, M. Ouyang, S.M. Cai, Z.Q. Xue, and Z.F. Liu, Observation of Nanometer-Sized Structures Using a Scanning Near-Field Optical Microscope (SNOM), Acta Physico-Chimica Sinica 35, 203 (1998).


9. M. Ouyang, S.M. Hou, H.F. Chen, K.Z. Wang, and Z.Q. Xue, A New Organic-Organic Complex Thin Film with Reproducible Electrical Bistable Properties, Phys. Lett. A235, 413 (1997).


8. M. Ouyang, Z.Q. Xue, K.Z. Wang, Q.D. Wu, and D. Qiang, Novel C60 -DDME Complex Thin Film with Electrical Bistable Properties, J. Vac. Sci. Tech. B15, 1304 (1997).


7. M. Ouyang, K.Z. Wang, H.X. Zhang, Z.Q. Xue, C.H. Huang, and D. Qiang, Study of a Novel C 60 -2,6-bis(2,2-bicyanovinyl)Pyridine Complex Thin Film, Appl. Phys. Lett. 68, 2441 (1996).


6. Z.Q. Xue, M. Ouyang, K.Z. Wang, H.X. Zhang, and C.H. Huang, Electrical Switching and Memory Phenomena in the Ag-BDCP Thin Film, Thin Solid Films 288, 296 (1996).


5. K.Z. Wang, Z.Q. Xue, M. Ouyang, H.X. Zhang and C.H. Huang, Study of Decacyclene-1,4-bis-(1,1-dicyanovinyl) Benzene Composite Film with Electronic Switching Characteristic, J. Mat. Sci. Lett. 15, 977 (1996).


4. K.Z. Wang, M. Ouyang, H.X. Zhang, Z.Q. Xue, C.H. Huang, and D. Qiang, A Novel C60 -Containing Electrical Switching Thin Film, Acta Scientiarum Naturalium Universitatis Pekinensis 32, 628 (1996).


3. K.Z. Wang, Z.Q. Xue, M. Ouyang, H.X. Zhang, and C.H. Huang, Electronic Memory Switching in a New Charge Transfer Complex Thin Film, Solid State Comm. 96, 481 (1995).


2. K.Z. Wang, Z.Q. Xue, M. Ouyang, D.W. Wang, H.X. Zhang, and C.H. Huang, A New Polynitrile Pi Acceptor for Electronic Swithching Devices, Chem. Phys. Lett. 243, 217 (1995).


1. M. Ouyang, Functional Method of Studying Electromagnetic Field Perturbed by Time-Independent Random Media, awarded Third Prize of National ‘Challenge Cup' (P.R. China) in 1995 & Top Prize of Young Scientific Award of Peking University in 1994.