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2007;
2006;
2005;
2004;
2003;
2002;
2001;
2000;
1999-1998;
1996-1997;
1988-1995;
Book Chapters;
Proceedings &
Patents
1995
18. Polymer microstructures formed by moulding in
capillaries
Kim, E.; Xia, Y. and Whitesides, G. M. Nature 1995, 376,
581-584 (cover article).
17. Microcontact printing of octadecylsiloxane on the
surface of silicon dioxide and its application in
microfabrication
Xia, Y.; Mrksich, M.; Kim, E. and Whitesides, G. M.
Journal of the American Chemical Society 1995, 117,
9576-9577.
16. Use of controlled reactive spreading of liquid
alkanethiol on the surface of gold to modify the size of
features produced
by microcontact printing
Xia, Y. and Whitesides, G. M. Journal of the American
Chemical Society 1995, 117, 3274-3275.
15. Patterned self-assembled monolayers formed by
microcontact printing direct selective metallization by
chemical-vapor-deposition on planar and nonplanar
substrates
Jeon, N. L.; Nuzzo, R. G.; Xia, Y.; Mrksich, M. and
Whitesides, G. M. Langmuir 1995, 11, 3024-3026.
14. Lithographic molding: A convenient route to
structures with sub-micrometer dimensions
Wilbur, J. L.; Kim, E.; Xia, Y. and Whitesides, G. M.
Advanced Materials 1995, 7, 649-652 (research news
article).
13. A selective etching solution for use with patterned
self-assembled monolayers of alkanethiolates on gold
Xia, Y.; Zhao, X.-M.; Kim, E. and Whitesides, G. M.
Chemistry of Materials 1995, 7, 2332-2337.
12. Reduction in the size of features of patterned SAMs
generated by microcontact printing with mechanical
compression of the stamp
Xia, Y. and Whitesides, G. M. Advanced Materials 1995,
7, 471-473.
11. New development of nonlinear-optical crystals for
the ultraviolet region with molecular engineering
approach
Chen, C.; Wang, Y.; Xia, Y.; Wu, B.; Tang, D.; Wu, K.;
Zheng, W.; Yu, L. and Mei, L. Journal of Applied Physics
1995, 77, 2268-2272.
10. New nonlinear-optical crystals for UV and VUV
harmonic-generation
Xia, Y.; Chen, C.; Tang, D. and Wu, B. Advanced
Materials 1995, 7, 79-81 (research news article).
9. Vapor-phase secondary doping of polyaniline
Min, Y.; Xia, Y.; MacDiarmid, A. G. and Epstein, A. J.
Synthetic Metals 1995, 69, 159-160.
8. Camphorsulfonic acid fully doped polyaniline
emeraldine salt – Conformations in different solvents
studied by an ultraviolet-visible near-infrared
spectroscopic method
Xia, Y.; Wiesinger, J. M.; MacDiarmid, A. G. and
Epstein, A. J. Chemistry of Materials 1995, 7, 443-445.
1994
7.
Camphorsulfonic acid fully doped polyaniline emeraldine
salt – in situ observation of electronic and
conformational changes induced by organic vapors by an
ultraviolet-visible near-infrared spectroscopic method
Xia, Y.; MacDiarmid, A. G. and Epstein, A. J.
Macromolecules 1994, 27, 7212-7214.
6. Polar orientation of inorganic anionic groups in the
crystal lattice
Xia, Y. Advanced Materials 1994, 6, 510-511 (talking
point article).
5. Room temperature synthesis of
poly(2,5-dimethoxy-1,4-phenylenevinylene) by the
chloride sulfonium salt route
Xia, Y.; MacDiarmid, A. G. and Epstein, A. J. Advanced
Materials 1994, 6, 293-295.
1993 and before
4. Minimum smoke solid rocket propellants: An
experimental study
Li, S. and Xia, Y. Journal of Propulsion Technology
1989, 1, 47-53.
3. Application of graph theory to chemical kinetics
Xia, Y. University Chemistry 1988, 4, 43-46.
2. Recent developments in minimum smoke rocket
propellants
Li, S. and Xia, Y. Shanghai Aerospace 1988, 4, 45-50
(review article).
1. A chain reaction model for aluminum aggregation in
solid rocket propellant
Xia, Y. and Li, S. Journal of Aerospace Power 1988, 8,
247-251.
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