Thank you!

Your quote has been successfully submitted!

For products requiring additional information, our team will contact you within 1 business day

Failed

There was an error submitting your quote. Please try again.

Six Probe Electrode – 6-pack– MSE Supplies LLC

Free Shipping on MSE PRO Online Orders of $500 or More! U.S. Orders Only * Offer Excludes Hazmat Shipments *

Menu

This product has been added to the cart.

Six Probe Electrode – 6-pack

Six Probe Electrode – 6-pack

SKU: AU.1000.3PE

  • £22800
  • Save £700



Six Probe Electrode – 6-pack

The three (3) probe microelectrode chip is ideal for designing and testing new chemical sensors. Gold provides high conductivity, and the transparent substrate allows for optical imaging of sensing layer. Applications include transistors (FETs, HEMTs, BioFETs), chemical sensors and biosensors. Gap distance: 400 µm; Finger width: 100 µm.

  • Substrate: Boro-Aluminosilicate
  • Metal Layer: 100-nm Gold (99.999% purity)
  • Adhesion layer: 5-nm Titanium
  • Chip dimensions: 1-cm x 2-cm x 0.07-cm
  • Chips per pack: 8 chips

    Description

    Patterned electrodes from Platypus Technologies consist of gold thin-films deposited on glass via e-beam evaporation and micromachined via photolithography and wet etching.  A titanium adhesion layer is applied between the gold film and glass substrate to improve mechanical stability.

    Patterned electrodes are ideal for discovery-oriented research with applications in chemical sensors, biosensors, lab-on-a-chip, microfluidics, field-effect transistors, 2D materials, and more.

    Features & Benefits:

    • Low surface roughness: provides excellent sample-to-sample reproducibility.
    • High-purity gold (99.999%): no need for dangerous/noxious surface cleaning steps.
    • Transparent glass substrate: easily visualize and manipulate your sample.

    Please contact us for bulk order or customized shape, size, thickness and substrate. 

      MSE Supplies offers custom metal coating services using e-beam vapor deposition, a high-vacuum process with excellent control of film thickness.