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Key Documents

920118

Sigma-Aldrich

Graphene, monolayer film

small grain, CVD graphene on silicon wafer, 4 in diameter

Synonyme(s) :

Roll-to-Roll graphene

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About This Item

Code UNSPSC :
12352103
Nomenclature NACRES :
NA.23

product name

R2R Monolayer small grain CVD graphene on silicon wafer, 4 in diameter, avg. no. of layers, 1

Niveau de qualité

Description

Growth method: roll-to-roll CVD
Wafer: SiO2 (300nm) Si
Number of layer: Monolayer
Raman intensity 2D/G: ≥1.5

Caractéristiques

avg. no. of layers 1

Résistance de la couche

240 Ω/sq ±10%

Taille

5 μm × 5 μm ± 10%, grain size

Couverture de surface

surface coverage >98%

Transmittance

>97%

Propriétés du semi-conducteur

(mobility>1500 cm2/V·s) (Hall effect measurements)

Description générale

Be cautious not to drop
Keep away from contamination, heat, dust and flame etc.
Roll-to-roll, high-quality, monolayer CVD graphene with small grain size (∼5μm2) on silicon wafer, 4 inch diameter.

Application

Our Roll-to-Roll CVD graphene products are true monolayer high quality graphene, fabricated inside a Cleanroom, heavily monitored and QC to assure high reproducibility.
The roll-to-roll process allows continuous, large scale graphene production.

This small grain size product is made by transferring roll-to-roll CVD graphene onto silicon wafer. It is ready-to-use with low sheet resistance, and would enable unmatched reproducibility and allow high performance for CVD graphene based cell culture scaffold, biosensors and chemically gated sensors.

Stockage et stabilité

Avoid direct sun light, avoid high temperature, avoid high humidity, and avoid dust.

Informations légales

Product of LG Electronics, R&D use only

Code de la classe de stockage

11 - Combustible Solids

Classe de danger pour l'eau (WGK)

WGK 3


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Certificats d'analyse (COA)

Lot/Batch Number

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Consulter la Bibliothèque de documents

Jinglei Ping et al.
ACS nano, 10(9), 8700-8704 (2016-08-18)
Scalable production of all-electronic DNA biosensors with high sensitivity and selectivity is a critical enabling step for research and applications associated with detection of DNA hybridization. We have developed a scalable and very reproducible (>90% yield) fabrication process for label-free
Omid Akhavan
Journal of materials chemistry. B, 4(19), 3169-3190 (2016-05-21)
Although graphene/stem cell-based tissue engineering has recently emerged and has promisingly and progressively been utilized for developing one of the most effective regenerative nanomedicines, it suffers from low differentiation efficiency, low hybridization after transplantation and lack of appropriate scaffolds required
Bing Deng et al.
Advanced materials (Deerfield Beach, Fla.), 31(9), e1800996-e1800996 (2018-10-03)
Chemical vapor deposition (CVD) is considered to be an efficient method for fabricating large-area and high-quality graphene films due to its excellent controllability and scalability. Great efforts have been made to control the growth of graphene to achieve large domain

Articles

Review on 1D vdWHs: Discusses materials, synthesis, optoelectronic applications, challenges, and future perspectives for 1D vdWH-based devices.

Review on 1D vdWHs: Discusses materials, synthesis, optoelectronic applications, challenges, and future perspectives for 1D vdWH-based devices.

Review on 1D vdWHs: Discusses materials, synthesis, optoelectronic applications, challenges, and future perspectives for 1D vdWH-based devices.

Review on 1D vdWHs: Discusses materials, synthesis, optoelectronic applications, challenges, and future perspectives for 1D vdWH-based devices.

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