Indium Working Electrode 3mm PTFE Encapsulated ATOMFAIR®

$42.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Research-grade indium working electrode with 3mm disk, straight cylindrical geometry, PTFE leak-proof encapsulation, and 5mm head length. Order now.

SKU: AF-EC-E-INDI-SPEC-3MM3
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Standard Indium Working Electrode Series | ATOMFAIR

RESEARCH GRADE INSTRUMENT

Product Overview

The ATOMFAIR® Standard Indium Working Electrode delivers exceptional cell-to-cell consistency and eliminates baseline variability for advanced electrochemical systems. Designed for researchers requiring indium-based electrode materials for electrochemical studies, this electrode platform provides reliable performance for corrosion research, materials characterization, and specific redox systems. Its universal design fits seamlessly into standard three-electrode cells and rotating disk electrode setups. Featuring a 1mm to 10mm diameter indium disk configuration, this working electrode offers a specialized solution for electrochemical applications where indium’s softness, good electrical conductivity, low melting point, and unique electrochemical behavior, including its characteristic underpotential deposition and amalgamation properties, are required.

Technical Specifications

PARAMETER DETAILS
1. Core Device & Electrochemical Design
Electrode Geometry Straight / Cylindrical geometry
Encapsulation Material High-grade PTFE (PEEK optional) – Absolute leak-proof sealing, non-contaminating
Electrode Head Length 5mm (Standard production specification)
2. Electrode Material Portfolio Parameters
Material Indium
Diameter Options 3mm (standard), 1-10mm (customized)

Key Features & Advantages

  • Specialized Indium Material: Constructed from high-purity indium, offering excellent electrical conductivity, soft and malleable properties, and distinctive electrochemical characteristics suitable for semiconductor research, battery and energy storage studies, corrosion investigations, and targeted redox systems involving indium-based materials.

  • PTFE Leak-Proof Encapsulation: Advanced PTFE jacket ensures absolutely no electrolyte seepage, maintaining baseline stability and protecting the electrode seal during long-term experiments.

  • Flexible Diameter Selection: Available in different sizes from 1mm to 10mm, accommodating various experimental requirements from micro-electrolysis to bulk solution analysis, with the 3mm option being the most commonly used size.

APPLICATION SCOPE: Healthcare, Environmental Monitoring, Chemical Engineering, Bio-industry, and Advanced Energy Systems.
PACKAGING: Secure individual research-grade protective containers with shock-absorption parameters.
IMPORTANT NOTICE: This product is highly sensitive to surface contamination. Keep containers tightly sealed or handle exclusively within an anhydrous inert environment to prevent phase contamination or degradation before electrochemical validation.
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

The Standard Indium Working Electrode requires strict environmental controls to prevent surface contamination. Storage must be in sealed containers, and handling must be performed within an anhydrous inert atmosphere.

  • Storage Requirement: Containers must be kept tightly sealed to prevent atmospheric contamination of the indium surface.
  • Handling Environment: All handling must occur within an anhydrous inert environment to avoid phase contamination or degradation.

How does the diameter of the indium working electrode affect measurement sensitivity and application suitability?

The diameter directly scales the electrode's electroactive surface area, trading off between microelectrode sensitivity and bulk current density. The ATOMFAIR® Standard Indium Working Electrode offers diameters from 1 mm to 10 mm, with the 3 mm standard balancing spatial resolution and ample faradaic current for common three-electrode cells, while 1 mm configurations enable micro-electrolysis studies and 10 mm versions support bulk solution analysis.

What application constraints should be considered when using an indium working electrode in corrosive or high-temperature electrolytes?

Indium's low melting point (~157 °C) and soft, malleable nature restrict operation to moderate temperatures and non-aggressive electrolyte environments to maintain electrode integrity. The high-purity indium material is best suited for semiconductor research, battery energy storage, and corrosion investigations where controlled conditions are feasible, and the PTFE encapsulation provides leak-proof sealing against electrolyte seepage.

What are the proper storage and handling procedures to prevent indium working electrode surface contamination and degradation?

The indium working electrode is highly sensitive to surface contamination and must be stored in tightly sealed, individual research-grade protective containers with shock-absorption parameters. Handling should be performed exclusively within an anhydrous inert environment to prevent phase contamination or surface oxide degradation before electrochemical validation.

The ATOMFAIR Standard Indium Working Electrode (3mm) provides high-purity indium in a leak-proof PTFE encapsulation, enabling reliable electrochemical studies where indium's unique underpotential deposition and amalgamation properties are required. Its surface contamination sensitivity mandates handling in anhydrous inert environments to maintain performance.

Positive

  • High-purity indium for specialized electrochemistry: Constructed from high-purity indium with excellent electrical conductivity and distinctive electrochemical behavior, ideal for semiconductor, battery, corrosion, and targeted redox studies.
  • Leak-proof PTFE encapsulation ensures baseline stability: Advanced PTFE jacket prevents electrolyte seepage and maintains baseline stability during long-term experiments, protecting the electrode seal.

Trade-offs

  • Surface contamination sensitivity requires inert handling: The electrode is highly sensitive to surface contamination; containers must be kept tightly sealed and handling should be performed exclusively within an anhydrous inert environment to prevent phase contamination or degradation before electrochemical validation.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).