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石墨烯支持膜(Graphene Support Films for TEM)

   石墨烯,一种只有一个原子厚的二维碳膜,这种新型材料化学性能稳定,很难与其他物质结合,石墨烯是目前发现的硬度最大的物质,有极好的导电和导热性能,这些性能使得石墨烯极适于制作电镜载网支持膜,为TEM观测纳米粒子提供了极大的方便,对进行纳米粒子界面研究者非常有帮助,尤其是纳米颗粒较小且附着力较差时可以使用这种特制的电镜载网。

目前提供有孔碳膜覆膜、2000目铜网覆膜、有孔氮化硅窗口(2.5µm孔)覆膜以及二氧化硅薄膜(基底是硅片)覆膜。常规提供的均有四种厚度石墨烯膜:

1.  单层石墨烯,厚度大约0.35nm

2.  2层石墨烯,厚度大约0.7nm

3.  3-5层石墨烯,1.0-1.7nm

4.  6-8层石墨烯,2.1-2.8nm

    石墨烯支持膜至少覆盖整个载网面积的75%的区域,一般挑选无重叠和褶皱的区域来放置样品。石墨烯支持膜超薄(远远薄于碳膜)、导电,本身呈晶体结构,信号的噪音相对很低。

 

          A typical TEM image of graphene sheets freely suspended on a lacey carbon TEM grid.

 

An atomic-resolution image of a clean and structurally perfect graphene sheet synthesized

by the substrate-free gas-phase method. Individual carbon atoms appear white in the image

 

产品选购:

货号

产品描述

规格

1GLC300Cu-5

1 layerGraphene on Lacey Carbon, 300 Cu

5

1GLC300Cu-10

1 layerGraphene on Lacey Carbon, 300 Cu

10

1GLC300Cu-25

1 layerGraphene on Lacey Carbon, 300 Cu

25

2GLC300Cu-5

2 layersGraphene on Lacey Carbon, 300 Cu

5

2GLC300Cu-10

2 layersGraphene on Lacey Carbon, 300 Cu

10

2GLC300Cu-25

2 layersGraphene on Lacey Carbon, 300 Cu

25

3GLC300Cu-5

3-5 layersGraphene on Lacey Carbon, 300 Cu

5

3GLC300Cu-10

3-5 layersGraphene on Lacey Carbon, 300 Cu

10

3GLC300Cu-25

3-5 layersGraphene on Lacey Carbon, 300 Cu

25

6GLC300Cu-5

6-8 layersGraphene on Lacey Carbon, 300 Cu

5

6GLC300Cu-10

6-8 layersGraphene on Lacey Carbon, 300 Cu

10

6GLC300Cu-25

6-8 layersGraphene on Lacey Carbon, 300 Cu

25

1GUF2000Cu-5

1 layerGraphene on Ultra-Fine, 2000 Cu

5

1GUF2000Cu-10

1 layerGraphene on Ultra-Fine, 2000 Cu

10

1GUF2000Cu-25

1 layerGraphene on Ultra-Fine, 2000 Cu

25

2GUF2000Cu-5

2 layersGraphene on Ultra-Fine, 2000 Cu

5

2GUF2000Cu-10

2 layersGraphene on Ultra-Fine, 2000 Cu

10

2GUF2000Cu-25

2 layersGraphene on Ultra-Fine, 2000 Cu

25

3GUF2000Cu-5

3-5 layersGraphene on Ultra-Fine, 2000 Cu

5

3GUF2000Cu-10

3-5 layersGraphene on Ultra-Fine, 2000 Cu

10

3GUF2000Cu-25

3-5 layersGraphene on Ultra-Fine, 2000 Cu

25

6GUF2000Cu-5

6-8 layersGraphene on Ultra-Fine, 2000 Cu

5

6GUF2000Cu-10

6-8 layersGraphene on Ultra-Fine, 2000 Cu

10

6GUF2000Cu-25

6-8 layersGraphene on Ultra-Fine, 2000 Cu

25

1GSiN2.5um-5

1 layerGraphene on Silicon Nitride, 2.5 µm

5

1GSiN2.5um-10

1 layerGraphene on Silicon Nitride, 2.5 µm

10

1GSiN2.5um-25

1 layerGraphene on Silicon Nitride, 2.5 µm

25

2GSiN2.5um-5

2 layersGraphene on Silicon Nitride, 2.5 µm

5

2GSiN2.5um-10

2 layersGraphene on Silicon Nitride, 2.5 µm

10

2GSiN2.5um-25

2 layersGraphene on Silicon Nitride, 2.5 µm

25

3GSiN2.5um-5

3-5 layersGraphene on Silicon Nitride, 2.5 µm

5

3GSiN2.5um-10

3-5 layersGraphene on Silicon Nitride, 2.5 µm

10

3GSiN2.5um-25

3-5 layersGraphene on Silicon Nitride, 2.5 µm

25

6GSiN2.5um-5

6-8 layersGraphene on Silicon Nitride, 2.5 µm

5

6GSiN2.5um-10

6-8 layersGraphene on Silicon Nitride, 2.5 µm

10

6GSiN2.5um-25

6-8 layersGraphene on Silicon Nitride, 2.5 µm

25

1GUFSiO2-5

1 layerGraphene on Ultra-flat Thermal SiO2

5

1GUFSiO2-10

1 layerGraphene on Ultra-flat Thermal SiO2

10

1GUFSiO2-25

1 layerGraphene on Ultra-flat Thermal SiO2

25

2GUFSiO2-5

2 layersGraphene on Ultra-flat Thermal SiO2

5

2GUFSiO2-10

2 layersGraphene on Ultra-flat Thermal SiO2

10

2GUFSiO2-25

2 layersGraphene on Ultra-flat Thermal SiO2

25

3GUFSiO2-5

3-5 layersGraphene on Ultra-flat Thermal SiO2

5

3GUFSiO2-10

3-5 layersGraphene on Ultra-flat Thermal SiO2

10

3GUFSiO2-25

3-5 layersGraphene on Ultra-flat Thermal SiO2

25

6GUFSiO2-5

6-8 layersGraphene on Ultra-flat Thermal SiO2

5

6GUFSiO2-10

6-8 layersGraphene on Ultra-flat Thermal SiO2

10

6GUFSiO2-25

6-8 layersGraphene on Ultra-flat Thermal SiO2

25

 

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