石墨烯晶体管探测器-GFET-S22P

货号:1022814 编号:MK22814

CAS号:7440-44-0 规格:1*1cm2

包装:1片/包装 保质期:

保存条件:

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货号:1022814 编号:MK22814

CAS号:7440-44-0 规格:1*1cm2

包装:1片/包装 保质期:

保存条件:

请选择规格参数

购买数量

器件照片:

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光学显微镜数据:

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石墨烯表征数据:

F11014_ref-standard-cleaning_area1_spectrum001_1024x1024_9a2d32d0-cd09-422e-9c5f-52e129106534_720x.png

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DESCRIPTION:

GFET-S22P (Die size 10 mm x 10 mm) - Processed in Clean Room Class 1000

The GFET S-22P chip from Graphenea is designed for measurements in liquid medium. The new version provides 4 independent set of graphene devices, each set with 3 individual channels, with encapsulation on the metal pads to avoid degradation and reduce leakage currents; the probe pads are located near the periphery of the chip. It also includes a non-encapsulated electrode at the center of the chip, which allows liquid gating without the need of an external gate electrode (such as Ag/AgCl probes). This device architecture enables each one of the set of devices to be modified individually, to obtain a multiplexed measurement.

TYPICAL SPECIFICATIONS

· Growth method: CVD synthesis

· Chip dimensions: 10 mm x 10 mm

· Chip thickness: 525 μm

· Number of GFETs per chip: 12 in parallel

· Gate oxide thickness: 90 nm

· Gate oxide material: SiO2

· Resistivity of substrate: 1-10 Ω.cm

· Metallization: Au contacts

· Graphene field-effect mobility: >1000 cm2/V.s

· Encapsulation:≈200 nm glutarimide-based

· Dirac point (liquid gating): <1V

· Minimum working devices: >75 %

ABSOLUTE MAXIMUM RATINGS

· Maximum gate-source voltage (liquid gating in PBS): ± 2 V

· Maximum temperature rating: 150 °C

· Maximum drain-source current density 107A.cm-2

QUALITY CONTROL

All our samples are subjected to a rigorous QC in order to ensure a high quality products.

· Optical Microscopy inspection of all the devices

· Raman spectroscopy of each fabrication batch

· Electrical characterisation of each fabrication batch

APPLICATIONS

Graphene field-effect transistors (GFETs) have unprecedented sensitivity to the surrounding environment and is an ideal transducer for a variety of sensing applications.  Depending on the application, GFETs can be tuned to be sensitive only to the stimulus of interest and have shown breakthrough performance in areas such as biosensing, graphene device research, chemical sensors and bioelectronics.


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