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The following publications contain information on the applications, properties, and technologies at Ocean NanoTech.
 
1.    L. Yang, X. Peng, Y. A.Wang, X.Wang, Z. Cao, C. Ni, P. Karna, X. Zhang, W. C. Wood, X. Gao, S.Nie, H.Mao. Receptor-Targeted Nanoparticles for In vivo Imaging of Breast Cancer. Clinical Cancer Research, 2009, 15, 4722-4732.
2.    L. Yang, H. Mao, Z. Cao Y. A. Wang, X. Peng, X. Wang, H.K. Sajja, L.Wang, H.Duan, C. Ni, C. A Staley, W. C. Wood, X. Gao, S. Nie. Molecular Imaging of Pancreatic Cancer in a Preclinical Animal Tumor Model Using Targeted Multifunctional Nanoparticles. Gastroenterlogy, 2009, 136, 1514-1525.
3.    Q. Sun, G. Subramanyam, L. Dai, M. Check, A. Campbell, R. Naik, J.Grote, Y. Wang. Highly Efficient Quantum-Dot Light-Emitting Diodes with DNA-CTMA as the Hole-Transporting/Electron-Blocking Layer. ACS Nano, 2009, 3, 737-743.
4.    L. Yang, H. Mao, Y. A. Wang, Z. Cao, X. Peng, X. Wang, H. Duan, C. Ni, Q. Yuan, G. Adams, M. Q. Smith, W. C. Wood, X. Gao, S. Nie. Single Chain Epidermal Growth Factor Receptor Antibody Conjugated Nanoparticles for in vivo Tumor Targeting and Imaging. Small, 2009, 5, 235-243.
5.    Y. Zhang , P. Jing, Y. Qu, L. Tu, Y. Sun, A. Y. Wang, X. Kong, J. Zhao, H. Zhang. Quenching of CdSe Core/Shell Quantum Dot Photoluminescence by Hole Transporting Materials. The Journal of Physical Chemistry C, 2009, 113, 1886-1890.
6.    Z. Tan, J. Xu, C. Zhang, T. Zhu, F. Zhang, B. Hedrick, S. Pickering, J. Wu, H. Su, S. Gao, A. Y. Wang, B. Kimball, J. Ruzyllo, N. S. Dellas, S. E. Mohney. Colloidal nanocrystal-based light-emitting diodes fabricated on plastic toward flexible quantum dot optoelectronics. Journal of Applied Physics, 2009, 105, 034312.
7.    Y. Song, R. P. Nair, M. Zou, Y. Wang. Superhydrophobic Surfaces Produced by Applying a Self- Assembled Monolayer to Silicon Micro/Nano-Textured Surfaces. Nano Research, 2009, 2, 143-150.
8.    Z. Tan, B. Hedrick, F. Zhang, T. Zhu, J. Xu, R.H. Henderson, J.Ruzyllo, A.Y. Wang. Stable Binary Complementary White Light-Emitting Diodes Based on Quantum-Dot/Polymer-Bilayer Structures. IEEE Photonics Technology Letters, 2008, 20, 1998-2000.
9. C. Zhang, F. Zhang, S. E. Mohney, R. Henderson, J. Xu,Q. Zhang, S. E. Mohney, R. H. Henderson, Y. A. Wang. Two-Photon Pumped Lasing from Colloidal Nanocrystal Quantum Dots. Optical Letters, 2008, 33, 2437.
10.K. Shanmugasundaram, F. Zhang, S.C. Price, S. E. Mohney, Q. Zhang, A. Y. Wang, J. Ruzyllo, J. Xu. Mist-Fabrication of Light Emitting Diodes with Colloidal Nanocrystal Quantum Dots. Applied Physics Letters, 2008, 92, 023111.
11.J. Yang, J.Gunn, S. Dave, M.Zhang, Y. A Wang, X. Gao. Ultrasensitive Detection and Molecular Imaging with Magnetic Nanoparticles. The Analysis, 2008, 133, 154–160.
12.H. Duan, M. Kuang, X. Wang, Y. A. Wang, S. Nie, H Mao. Reexamining the effects of particle size and surface chemistry on magnetic properties of iron oxide nanocrystals: new insights into spin disorder and proton relaxivity. The Journal of Physical Chemistry C, 2008, 112, 8127–8131.
13.X. Peng, X Qian, H Mao, YA Wang, Z Chen, S Nie, DM Shin. Targeted magnetic iron oxide nanoparticles for tumor imaging and therapy. International Journal of Nanomedicine, 2008, 3, 311-321.
14.L. Yang, Z. Cao, H. K. Sajja, H. Mao, L. Wang, H. Geng, H. Xu, T. Jiang, W. C. Wood, S. Nie, Y. A. Wang. Development of Receptor Targeted Magnetic Iron Oxide Nanoparticles for Efficient Drug Delivery and Tumor Imaging. Journal of Biomedical Nanotechnology, 2008, 4, 439-449.
15.D. Cui, J. Xu, G. Paradee, S. Xu, A. Y. Wang. Developing PbSe/PbS core-shell nanocrystals quantum dots toward their potential heterojunction applications. Journal of Experiment NanoScience, 2007, 2, 13-21.
16.J. Xu, J. Liu, D. Cui, M. Gerhold, A. Y. Wang, M. Nagel, T. K. Lippert. Laser-assisted forward transfer of multi-spectral nanocrystal quantum dot emitters. Nanotechnology, 2007, 18, 025403.
17.F. Zhang, J. Xu, A. Lakhtakia, S. M. Pursel, M. W. Horn, and Y. A. Wang. Circularly polarized emission from colloidal nanocrystal quantum dots confined in microcavities formed by chiral mirrors. Applied Physics Letters, 2007, 91, 023102.
18.Q. Sun, Y. A. Wang, L. Li, D. Wang, T. Zhu, J. Xu, C. Yang, Y. Li. Bright Multicoloured Light Emitting Diodes Based on Quantum Dots. Nature Photonics, 2007, 1, 717-722.
19.Z. Tan. F. Zhang, T. Zhu, J. Xu, Y. A Wang, J. D. Dixon, L. Li. Q. Zhang, S. E. Mohney, J. Ruzyllo. Bright and Color-Saturated Emission from Blue Light Emitting Diodes based on Solution-Processed Colloidal Nanocrystal Quantum Dots. Nano Letters, 2007, 7, 3803-3807.
20.O. Taratula, R. Salva, I. Pandya, A. Wang, T. Minko, H. He. Multifunctional siRNA delivery system for cancer therapy. NSTI-NanoTech, 2008, 4.
21.K. Chen, J. Xie, H. Xu, Deepak Behera, M. H. Michalski, S. Biswal, A. Wang, X. Chen. Triblock copolymer coated iron oxide nanoparticle conjugate for tumor integrin targeting. Biomaterials, 2009, 30 (36), 6912-6919.
22.Y. Zhang, X. Kong, Y. Qu, P. Jing, Q. Zeng, Y. Sun, A. Wang, J. Zhao, H. Zhang. Shell-dependent hole transport in highly luminescent CdSe-core CdS/ZnCdS/ZnS multi-shell nanocrystals. Journal of Luminescence, 2009, 129 (12), 1410-1414.