
Assistant Professor
Iowa State University
Materials Science and Engineering
3161 Gilman Hall / 2220Q Hoover Hall
Ames, IA 50011-3025
Phone: 515-294-9967 / 515-294-1435
Fax: 515-294-7202
zqlin
iastate.edu
Nanoscopic structures; Hierarchical structure formation and assembly; Block copolymers; Polymer blends; Polymer dispersed liquid crystals; Polymer-based nanocomposites; Quantum dots; Conjugated polymers; Light emitting diode; Solar cells; Surface and interfacial Poperties; Phase equilibrium and phase separation kinetics; Electrohydrodynamic instabilities; Nanodynamics; Intermolecular and surface force; Confocal Raman measurements; Polymer conformation in confined geometries; Absorption and emission measurements; Superhydrophobic surface, gradient surface; Surface enhanced Raman scattering, surface plasmon resonance; Neutron and X-ray scattering measurements; Neutron and X-ray reflectivity measurements
Publications at Iowa State University (* = corresponding author)
2008
46. K.S. Kim, Z. Lin, P. Shrotriya, S. Sundararajan, and Q. Zou, "Iterative control approach to high-speed force-curve measurement using atomic force microscope: PDMS elastic modulus example", Ultramicroscopy (in press). [PDF]
45. K.S.K. Karuppiah, A.L. Bruck, S. Sundararajan, J. Wang, Z. Lin, Z. Xu, and X. Li, "Friction and waer behavior of ultra-high molecular weight polyethylene as a function of polymer crystallinity", Acta Biomaterilia (in press). [PDF]
44. S.W. Hong, W. Jeong, H. Ko, M. Kessler, V.V. Tsukruk, and Z. Lin*, "Directed self-assembly of gradient concentric carbon nanotube rings", Advanced Functional Materials, 18, 2114 (2008). [PDF] (featured on Inside Front Cover of Avanced Functional Materials (issue 14); and highlighted in the news "Directed Self-assembly of Ordered Structures as a Simple Nanotechnology Tool", Nanowerk, July 16, 2008).
43. Z. Lin*, "Organic-inorganic nanohybrids through the direct tailoring of semiconductor nanocrystals with conjugated polymers", Chemistry-A European Journal, 14, 6294 (2008). [PDF] (invited Concept article)
42. J. Wang, J. Xu, M. Goodman, Y. Chen, M. Cai, J. Shinar, and Z. Lin*, "A simple biphasic route to water soluble dithiocarbamate functionalized CdSe quantum dots", Journal of Materials Chemistry, 18, 3270 (2008). [PDF] (featured on Inside Front Cover of Journal of Materials Chemistry (issue 27).
41. D. Zimnitsky, J. Xu, Z Lin, and V. V. Tsukruk, "Domain and network aggregation of CdTe quantum rods within Langmuir-Blodgett monolayers", Nanotechnology, 19, 215606 (2008). [PDF]
40. P. Molian, Z. Lin, and Q. Zou, "Nano-holes in silicon wafers using laser-induced surface plasmon polaritons", Journal of Nanoscience and Nanotechnology, 8, 2163 (2008). [PDF]
39. M. Byun, S.W. Hong, L. Zhu, and Z. Lin*, "Self-assembling semicrystalline polymer into highly ordered, microscopic concentric rings by evaporation", Langmuir, 24, 3525 (2008). [PDF]
38. J. Wang and Z. Lin*, "Freestanding TiO2 nanotube arrays with ultrahigh aspect ratio via electrochemical anodization", Chemistry of Materials, 20, 1257 (2008). [PDF]
2007
37. J. Xu, J. Wang, M. Mitchell, P. Mukherjee, M. Jeffries-EL, J. W. Petrich, and Z. Lin*, "Organic-inorganic nanocomposites prepared by grafting conjugated polymers onto quantum dots", Journal of the American Chemical Society, 129, 12828 (2007). [PDF]
36. Y. Lin, C. Jiang, J. Xu, Z. Lin*, and V. V. Tsukruk*, "Sculptured layer-by-layer films", Advanced Materials, 19, 3827 (2007). [PDF]
35. D. Zimnitsky, C. Jiang, J. Xu, Z. Lin, L. Zhang, and V. V. Tsukruk, "Photoluminescence of a freely suspended monolayer of quantum dots encapsulated into layer-by-layer films", Langmuir, 23, 10176 (2007). [PDF] (Highlighted in the news "Suspended in Film and Placed Over Microcavities, Quantum Dots Become Brighter", Photonics Spectra, November, 2007, page 98)
34. J. Wang, J. Xia, S. W. Hong, F. Qiu, Y. Yang, and Z. Lin*, "Phase separation of polymer-dispersed liquid crystals on a chemically patterned substrate", Langmuir, 23, 7411 (2007). [PDF] (feature on Cover of Langmuir (July 3, 2007 issue)).

33. S. W. Hong, J.Xia, and Z. Lin*, "Spontaneous formation of mesoscale polymer patterns in an evaporating bound solution", Advanced Materials, 19, 1413 (2007). [PDF]
32. S. W. Hong, J. Xia, M. Byun, Q. Zou, and Z. Lin*, "Mesoscale patterns formed by evaporation of a polymer solution in the proximity of a sphere on a smooth substrate: molecular weight and curvature effects", Macromolecules, 40, 2831 (2007). [PDF]
31. D. Zimnitsky, C. Jiang, J. Xu, Z. Lin, and V. V. Tsukruk, "Substrate- and time-dependent photoluminescence of quantum dots inside the ultrathin polymer LbL film", Langmuir, 23, 4509 (2007). [PDF]
30. Y. H. Lin, C. Jiang, J. Xu, Z. Lin, and V. V. Tsukruk, " Robust, fluorescent, and nanoscale freestanding conjugated films", Soft Matter, 3, 432 (2007). [PDF]
29. J. Xu, J. Xia, and Z. Lin*, "Evaporation-induced self-assembly of nanoparticles from a sphere-on-flat geometry", Angewandte Chemie International Edition, 46, 1860 (2007). [PDF]
2006
28. S. W. Hong, J. Xu, and Z. Lin*, "Template-assisted formation of gradient concentric gold rings" Nano Letters, 6, 2949 (2006). [PDF]
27. S. W. Hong, S. Giri, V.S.Y. Lin, and Z. Lin*, "Simple route to gradient concentric metal and metal oxide rings" Chemistry of Materials, 18, 5164 (2006). [PDF]
26. J. Xu, J. Xia, J. Wang, J. Shinar and Z. Lin*, "Quantum dots confined in nanoporous alumina membranes" Applied Physics Letters, 89, 133110 (2006). [PDF]
25. J. Xia, J. Wang, Z. Lin*, F. Qiu and Y. Yang, "Phase separation kinetics of polymer dispersed liquid crystals confined between two parallel walls" Macromolecules, 39, 2247 (2006). [PDF]
24. J. Xu, J. Xia, S. W. Hong, Z. Lin*, F. Qiu and Y. Yang, "Self-assembly of gradient concentric rings via solvent evaporation from a capillary bridge" Physical Review Letters, 96, 066104 (2006). [PDF]
2005
23. S. W. Hong, J. Xu, J. Xia, Z. Lin*, F. Qiu and Y. Yang, "Drying mediated pattern formation in a capillary-held organometallic polymer solution", Chemistry of Materials, 17, 6223 (2005). [PDF]
Selected Publications Prior to Iowa State University (For a complete list (22 papers), click on Functional Polymeric Nanocomposites Research Group Website)
Current Graduate Students
Graduated Ph.D. students
Detailed information on research can be seen at Functional Polymeric Nanocomposites Research Group Website