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Merck
CN
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主要文件

安全信息

745863

Sigma-Aldrich

单层石墨烯薄膜

1 in x 1 in on PET film, avg. no. of layers, 1

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About This Item

UNSPSC代码:
12352103
NACRES:
NA.23

表单

film

特点

avg. no. of layers 1

电阻

700 Ω/sq

长度 × 宽度 × 厚度

1 in. × 1 in. × (theoretical) 0.345 nm, monolayer graphene film
1 in. × 1 in. × 0.188 mm, PET film substrate

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一般描述

Monolayered graphene films can be obtained by thermal chemical vapour deposition.

应用

Monolayer graphene films (on PET films) may be used fabricate a graphene-based narrowband transparent microwave absorber.

其他说明

Specification of a PET film (Representative Value)
Material – PET (Polyethyleneterephtalate) -
Thickness : 0.188 mm (0.0074 inch)
Haze : 0.9%
Light transmission : 92%
Tensile Strength MD:179MPa TD:197MPa
Tensile elongation MD:132% TD:99%
Coefficient of Static Friction : 0.46
Coefficient of Kinetic Friction : 0.40
Coefficient of Thermal expansion MD:0.9% TD:0.7%

储存分类代码

11 - Combustible Solids

WGK

WGK 3

闪点(°F)

521.6 - 750.2 °F

闪点(°C)

272 - 399 °C

法规信息

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分析证书(COA)

Lot/Batch Number

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Transparent Microwave Absorber Based on Patterned Graphene: Design, Measurement, and Enhancement.
Yi Da, et al.
Nanotechnology, IEEE Transactions, 16(3), 484-490 (2017)
Chaejeong Heo et al.
Biomaterials, 32(1), 19-27 (2010-10-01)
Electric field stimulation has become one of the most promising therapies for a variety of neurological diseases. However, the safety and effectiveness of the stimulator are critical in determining the outcome. Because there are few safe and effective in vivo
Lian; Wei-Ren;
Macromolecules, 44(24), 9550-9555 (2011)
Verma; Ved;
Applied Physics Letters, 96(20), 203108/1-203108/3 (2010)
Controlled Synthesis of Monolayer Graphene Toward Transparent Flexible Conductive Film Application
Jee BJ, et al.
Nanoscale Research Letters, 5, 1768?1773-1768?1773 (2010)

商品

The ability to pattern conductive electrodes is technologically relevant for several applications, including photovolatics, displays, sensors, and biomedical devices.

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

Graphene's unique properties spark interdisciplinary interest; its honeycomb structure offers electrical, optical, and mechanical marvels.

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