推荐产品
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
正在寻找类似产品? 访问 产品对比指南
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%
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
新产品
Transparent Microwave Absorber Based on Patterned Graphene: Design, Measurement, and Enhancement.
Nanotechnology, IEEE Transactions, 16(3), 484-490 (2017)
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
Macromolecules, 44(24), 9550-9555 (2011)
Applied Physics Letters, 96(20), 203108/1-203108/3 (2010)
Controlled Synthesis of Monolayer Graphene Toward Transparent Flexible Conductive Film Application
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.
我们的科学家团队拥有各种研究领域经验,包括生命科学、材料科学、化学合成、色谱、分析及许多其他领域.
联系技术服务部门