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Nano Letters

Resumen/Descripción – provisto por la editorial

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Palabras clave – provistas por la editorial

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Disponibilidad
Institución detectada Período Navegá Descargá Solicitá
No detectada desde ene. 2001 / hasta dic. 2023 ACS Publications

Información

Tipo de recurso:

revistas

ISSN impreso

1530-6984

ISSN electrónico

1530-6992

Editor responsable

American Chemical Society (ACS)

País de edición

Estados Unidos

Fecha de publicación

Tabla de contenidos

Si Nanowires as Sensors:  Choosing the Right Surface

Cedric R. Leão; Adalberto Fazzio; Antônio J. R. da Silva

Palabras clave: Mechanical Engineering; Condensed Matter Physics; General Materials Science; General Chemistry; Bioengineering.

Pp. 1172-1177

Tuning the Mechanical Properties of SWNT/Nylon 6,10 Composites with Flexible Spacers at the Interface

Mohammad Moniruzzaman; Jayanta Chattopadhyay; W. Edward Billups; Karen I. Winey

Palabras clave: Mechanical Engineering; Condensed Matter Physics; General Materials Science; General Chemistry; Bioengineering.

Pp. 1178-1185

Effects of Quantum Confinement on the Doping Limit of Semiconductor Nanowires

D. R. Khanal; Joanne W. L. Yim; W. Walukiewicz; J. Wu

Palabras clave: Mechanical Engineering; Condensed Matter Physics; General Materials Science; General Chemistry; Bioengineering.

Pp. 1186-1190

Optical Absorption of DNA−Carbon Nanotube Structures

Mary E. Hughes; Eric Brandin; Jene A. Golovchenko

Palabras clave: Mechanical Engineering; Condensed Matter Physics; General Materials Science; General Chemistry; Bioengineering.

Pp. 1191-1194

Experimental and Theoretical Studies of Transport through Large Scale, Partially Aligned Arrays of Single-Walled Carbon Nanotubes in Thin Film Type Transistors

C. Kocabas; N. Pimparkar; O. Yesilyurt; S. J. Kang; M. A. Alam; J. A. Rogers

Palabras clave: Mechanical Engineering; Condensed Matter Physics; General Materials Science; General Chemistry; Bioengineering.

Pp. 1195-1202

Absorption Spectroscopy of Individual Single-Walled Carbon Nanotubes

Stéphane Berciaud; Laurent Cognet; Philippe Poulin; R. Bruce Weisman; Brahim Lounis

Palabras clave: Mechanical Engineering; Condensed Matter Physics; General Materials Science; General Chemistry; Bioengineering.

Pp. 1203-1207

Where, and How, Does a Nanowire Break?

Dongxu Wang; Jianwei Zhao; Shi Hu; Xing Yin; Shuai Liang; Yunhong Liu; Shengyuan Deng

Palabras clave: Mechanical Engineering; Condensed Matter Physics; General Materials Science; General Chemistry; Bioengineering.

Pp. 1208-1212

Dipole−Dipole Interactions in Nanoparticle Superlattices

Dmitri V. Talapin; Elena V. Shevchenko; Christopher B. Murray; Alexey V. Titov; Petr Král

Palabras clave: Mechanical Engineering; Condensed Matter Physics; General Materials Science; General Chemistry; Bioengineering.

Pp. 1213-1219

Nanocrystalline Nanowires:  III. Electrons

Philip B. Allen

Palabras clave: Mechanical Engineering; Condensed Matter Physics; General Materials Science; General Chemistry; Bioengineering.

Pp. 1220-1223

Counterintuitive Effect of Molecular Strength and Role of Molecular Rigidity on Mechanical Properties of Layer-by-Layer Assembled Nanocomposites

Paul Podsiadlo; Zhiyong Tang; Bong Sup Shim; Nicholas A. Kotov

Palabras clave: Mechanical Engineering; Condensed Matter Physics; General Materials Science; General Chemistry; Bioengineering.

Pp. 1224-1231