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Merck

750522

Sigma-Aldrich

Carbon nanotube, single-walled

98% (Semiconducting), avg. no. of layers, 1

Sinónimos:

SWCNT

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About This Item

Número de CAS:
Número MDL:
Código UNSPSC:
12352103
NACRES:
NA.23

Nivel de calidad

Ensayo

2% (Metallic)
98% (Semiconducting)

Formulario

solid

Características

avg. no. of layers 1

fabricante / nombre comercial

NanoIntegris, Inc.

Longitud

0.3-5 μm

diámetro

1.2-1.7 nm

mp

3652-3697 °C (lit.)

densidad

1.7-1.9 g/cm3 at 25 °C (lit.)

cadena SMILES

[C]

Clave InChI

OKTJSMMVPCPJKN-UHFFFAOYSA-N

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Descripción general

IsoNanotubes-S are produced by arch discharge or plasma torch. The diameter of the semiconducting single walled nanotubes range in 1.2-1.7 nm, whereas the length varies from 100nm to 4 μm. The degree of purity of the SWNTs can be determined from the absorbance spectrum. The optical absorbance of semiconducting SWNTs occurs at S22 (850-1250nm) and S33 (450-550nm). Toxic behavior of SWNTS were studied by studying the response of human hepatocarcinoma cells to SWNTs.

Aplicación

These carbon nanotubes are produced via the arc discharge process and are purified via density gradient centrifugation.Semiconducting SWNTs can be used in various wearable and flexible devices such as bendable pressure sensor. Research applications include:
  • Electronics
  • Sensors
  • Composites
  • Energy Storage
  • Study of Life Science systems

Nota de preparación

Electric Arc Discharge Method

Información legal

Product of NanoIntegris, Inc
IsoNanotubes-S is a trademark of NanoIntegris, Inc.

Código de clase de almacenamiento

11 - Combustible Solids

Clase de riesgo para el agua (WGK)

WGK 3

Punto de inflamabilidad (°F)

Not applicable

Punto de inflamabilidad (°C)

Not applicable


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Single-walled carbon nanotubes induce cytotoxicity and DNA damage via reactive oxygen species in human hepatocarcinoma cells
Alarifi S, et al.
In Vitro Cellular & Developmental Biology. Animal, 50(8), 714-722 (2014)
Chad D Vecitis et al.
ACS nano, 4(9), 5471-5479 (2010-09-04)
Single-walled carbon nanotubes (SWNTs) have been previously observed to be strong antimicrobial agents, and SWNT coatings can significantly reduce biofilm formation. However, the SWNT antimicrobial mechanism is not fully understood. Previous studies on SWNT cytotoxicity have concluded that membrane stress
Chuan Wang et al.
ACS nano, 4(12), 7123-7132 (2010-11-11)
Macroelectronic integrated circuits are widely used in applications such as flat panel display and transparent electronics, as well as flexible and stretchable electronics. However, the challenge is to find the channel material that can simultaneously offer low temperature processing, high
Amin Salehi-Khojin et al.
ACS nano, 5(1), 153-158 (2010-12-29)
There has been recent controversy whether the response seen in carbon nanotube (CNT) chemiresistors is associated with a change in the resistance of the individual nanotubes or changes in the resistance of the junctions. In this study, we carry out

Artículos

We presents an article concerning the applications of high-purity single-walled nanotubes in electronic and biomedical fields.

We presents an article concerning the applications of high-purity single-walled nanotubes in electronic and biomedical fields.

We presents an article concerning the applications of high-purity single-walled nanotubes in electronic and biomedical fields.

We presents an article concerning the applications of high-purity single-walled nanotubes in electronic and biomedical fields.

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