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Self-assembled monolayer / Self-organization / Supramolecular chemistry / Science / Biochip / Chemistry / Nanotechnology / Thin films


Zuschriften DOI: angeMolecular Electronics Encoding Molecular-Wire Formation within Nanoscale Sockets**
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Document Date: 2015-05-06 04:34:16


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City

San Francisco / Weinheim / /

Company

Wiley-VCH Verlag GmbH & Co. KGaA / Bain / /

Country

United States / /

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Facility

Molecular Nanostructures Columbia University / /

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IndustryTerm

energy levels / tetramethylammonium hydroxide solution / metal / chemical synthesis / satellite peaks / metal ion / terpyridyl devices / transition-metal ions / metal-free state / molecular electronic devices / metal junction / molecular electronics / planar metal / metal surface / nanoscale electronics / metal bridge / connected devices / /

Organization

American Chemical Society Division of Organic Chemistry / Columbia University / Center for Electron Transport / US Department of Energy / National Science Foundation / New York State office of Science / Technology / and Academic Research / Chemical Sciences / Geosciences / and Biosciences Division / office of Basic Energy Sciences / C. Nuckolls Department of Chemistry / S. J. Wind Department of Applied Physics/Applied Mathematics / /

Person

L. Jones / II / Horst Stormer / George S. Tulevski / H. B. Weber / Colin Nuckolls / Jennifer E. Klare / Proc / Julius Rebek / Jr. / Cherie Kagan / Michael Steigerwald / S. J. Wind / S. W. Keller / V / /

Position

author / Mayor / Professor / M. Mayor / /

ProvinceOrState

S. K. / /

PublishedMedium

Angewandte Chemie / Organic Syntheses / /

Technology

X-ray / spectroscopy / lithography / /

URL

www.angewandte.de / http /

SocialTag