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2013
18. X. Pang, L. Zhao, W. Han, X. Xin, and Z. Lin, "A general and robust strategy for the synthesis of nearly monodisperse colloidal nanocrystals”, Nature Nanotechnology, 8, 426 (2013). (Highlighted by: [Nature Nanotechnology News and Views]; [Georgia Institute of Technology]; [R&D Magazine]; [ScienceDaily]; [Science Newsline]; [Nanowerk]; [Nanotechnology Now]; [RedOrbit Inc]; [PCBDesign007]; [Azonano]; and [more])
17. W. Han, M. He, M. Byun, B. Li, and Z. Lin, “Large-scale hierarchically structured conjugated polymer assemblies with enhanced electrical conductivity”, Angewandte Chemie International Edition, 52, 2564 (2013). (Selected as Very Important Paper (VIP)).
16. M. Byun, W. Han, B. Li, X. Xin, and Z. Lin, "An unconventional route to hierarchically ordered block copolymer on gradient patterned surface enabled by controlled evaporative self-assembly”,Angewandte Chemie International Edition, 52, 1122 (2013). (Featured on the Frontispiece of Angewandte Chemie International Edition).
15. M. Ye, D. Zheng, M. Lv, C. Chen, C. Lin, and Z. Lin, "Hierarchically structured nanotubes for highly efficient dye-sensitized solar cells”, Advanced Materials, 25, 3039 (2013). (featured on the Frontispiece of Advanced Materials).
14. W. Han, B. Li, and Z. Lin, "Drying-mediated assembly of colloidal nanoparticles into large-scale microchannels”, ACS Nano , 7, 6079 (2013).
13. B. Li, W. Han, M. Byun, L. Zhu, Q. Zou, and Z. Lin, "Macroscopic highly aligned DNA nanowires created by controlled evaporative self-assembly”, ACS Nano, 7, 4326 (2013).
12. M. Wang, L. Sun, Z. Lin, J. Cai, K. Xie, and C. Lin, "p-n heterojunction photoelectrodes composed of Cu2O-loaded TiO2 nanotube arrays with enhanced photoelectrochemical and photoelectrocatalytic activities”, Energy & Environmental Science, 6, 1211 (2013).
11. M. He, F. Qiu, and Z. Lin, "Towards high-performance polymer-based thermoelectric materials”, Energy & Environmental Science, 6, 1352 (2103). (Invited Review) (featured on the Cover of Energy & Environmental Science).
10. M. He, F. Qiu, and Z. Lin, "Towards high performance organic-inorganic hybrid solar cells: bringing conjugated polymers and inorganic nanocrystals in close contact”, The Journal of Physical Chemistry Letters, 4, 1788 (2013). (featured on the Cover of The Journal of Physical Chemistry Letters).
9. M. Ye, H. Liu, C. Lin, and Z. Lin, “Hierarchical rutile TiO2 flower clusters based high efficiency dye-sensitized solar cells via direct hydrothermal growth on conducting substrates”, Small, 9, 312( (2013).
8. X. Pang, Y. He, B. Jiang, J. Iocozzia, L. Zhao, H. Guo, J. Liu, M. Akinc, X. Tan, N. Bowler, and Z. Lin, "Block copolymer/ferroelectric nanoparticle nanocomposites”, Nanoscale. 5, 8695 (2013).
7. X. Xin, H. Liu, M. Ye, and Z. Lin, "Semiconductor hierarchically structured flower-like clusters for dye-sensitized solar cells with nearly 100% charge collection efficiency”, Nanoscale. 5, 11220 (2013).
6. S. Wu, Z. Wang, X. Ouyang, and Z. Lin, "Core/Shell Zn2GeO4 Nanorods and Their Size-Dependent Photoluminescence Properties”, Nanoscale. 5, 12335 (2013).
5. L. Zhao, C. Feng, X. Pang, J. Jung, M. C. Stefan, P. Sista, R. Han, N. Fang, and Z. Lin, "Self-assembly of conjugated triblock copolymer at the air/water interface”, Soft Matter, 33, 8050 (2013).
4. J. Jung, X. Pang, C. Feng, and Z. Lin, "Semiconducting conjugated polymer-inorganic tetrapods nanocomposites”, Langmuir , 25, 8086 (2013).
3. X. Pang, L. Zhao, C. Feng, R. Wu, and Z. Lin, “Functional copolymer brushes composed of hydrophobic backbone and densely grafted conjugated side chains via a combination of click chemistry with living polymerization”, Polymer Chemistry, 4, 2025 (2013).
2. J. Liu, H. Guo, X. Pang, X. Tan, M. Akinc, Z. Lin, and N. Bowler,"Dynamics of polystyrene-b-poly(methylmethacrylate) (PS-b-PMMA) diblock copolymers and PS/PMMA blends: a dielectric study”, Journal of Non-Crystalline Solids, 359, 27 (2013).
1. H. Ma, X. Pang, J. Jung, L. Zhao, C. Feng, W. Han, X. Xin, and Z. Lin, "Synthesis and characterization of semiconducting conjugated polymer-nanowire nanocomposites”, Science of Advanced Materials , 5, 727 (2013).
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