Asianano, 2002 by Masatsugu Shimomura, Teruya Ishihara

By Masatsugu Shimomura, Teruya Ishihara

This publication offers with the vast spectrum of nanoscience and nanotechnology, the place interdisciplinary collaboration is crucial. Focuses are put on fabrics (nanoparticles, dendrimer, CNT), fabrication (LB movie, SAM, substitute adsorption, microcontact printing, photofabrication) and characterization (scanning probe microscopy and electron microscopy) at the nanoscale. rising functions to nanophotonics and nanobionics are mentioned besides.

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Sample text

Micropatterning of the functional groups influenced the magnitudes of the surface free energy. The patterned surface was also applied for the site-specific polymerization and site-specific adsorption of microparticles. Keywords: Organosilane; photodecomposition; surface nanostructure; surface properties. 1. Introduction In order to fabricate micro- and nanodevices by the bottom-up approach, it requires building blocks with precisely controlled and tunable chemical composition, morphology and size virtually at will.

L. LIN Department of Engineering and System Science National Tsing Hua University, Hsinchu 300, Taiwan M. H. WU, Z. A. CHI, and M. C. -H. -Y. LEE Synchrotron Radiation Research Center, Hsinchu 300, Taiwan L. Y. CHIANG Center for Condensed Matter Sciences National Taiwan University, Taipei 106, Taiwan Received 27 November 2002 Revised 3 January 2003 Monolayers of a lipophilic C60-derivative (FPTL) mixed in dipalmitoyl-phosphatidylcholine (DPPC) have been studied by the Langmuir film balance technique and Brewster angle microscopy.

Sawadaishi, M. Hara, and M. Shimomura, Langmuir 18, 5734 (2002). 8. I. Engelberg and J. Kohn, Biomaterials 12, 292 (1991). 44 International Journal of Nanoscience, Vol. 1, Nos. 5 & 6 (2002) 419-423 © World Scientific Publishing Company SURFACE S T R U C T U R E A N D PROPERTIES OF MULTICOMPONENT MICROPATTERNED ORGANOSILANE MONOLAYERS P R E P A R E D B Y S T E P W I S E P H O T O D E C O M P O S I T I O N A N D C H E M I S O R P T I O N PROCESS TOMOYUKI KOGA, MASAMICHI MORITA, HIROKI SAKATA, HIDEYUKI OTSUKA, and ATSUSHI TAKAHARA* Institute for Fundamental Research of Organic Chemistry Kyushu University, Hakozaki, Higashi-ku Fukuoka 812-8581, Japan Received 27 November 2002 Multicomponent micropatterned organosilane monolayers were successfully fabricated on Si substrate by stepwise vacuum ultraviolet-ray (VUV) photodecomposition and chemisorption process.

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