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Electrode Probe, 1999mV ORP Replacement Prob, Good Electrical Conductivity, Suitable for ORP Instruments Controllers with BNC Connectors.

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Gisafai 9 Pcs Metal Electrodes Set 1 x 6 x 0.04 Inch 3 Copper Anode 3 Pure Nickel Strip 3 Zinc 99.95% Electrode Strips Plating Kit for Electroplating DIY Plating Experiment Classrooms STEM Experiments

Original price was: $24.99.Current price is: $23.74.
Gisafai 9 Pcs Metal Electrodes Set 1 x 6 x 0.04 Inch 3 Copper Anode 3 Pure Nickel Strip 3 Zinc 99.95% Electrode Strips Plating Kit for Electroplating DIY Plating Experiment Classrooms STEM Experiments-0

Pure Copper Zinc Anode Set 99.95% High Purity Copper Zinc Electrode Strips Set 0.039”x0.98”x5.98”(1mmx25mmx152mm) (19 GA) Zinc Copper Electrode Strip for Electroplating and Plating

Original price was: $6.49.Current price is: $6.23.

The Pure Copper Zinc Anode Set from NIONSUPPLY includes one high‑purity copper sheet and one zinc sheet, each measuring 0.039×0.98×5.98 in (1 mm × 25 mm × 152 mm). With copper at 99.95% purity and zinc at 99.995%, these electrodes deliver consistent performance for electroplating, corrosion protection, and educational laboratory experiments. Ideal for hobbyists, schools, and professional labs seeking reliable, cost‑effective plating solutions.

9999 in stock
SKU: CJBNLQB0B5GB Category:
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Description

Product Overview

The Pure Copper Zinc Anode Set from NIONSUPPLY is engineered for precision and durability in a wide range of electrochemical applications. Each set contains two electrode strips: a copper anode sheet with a certified purity of 99.95% and a zinc anode sheet with a certified purity of 99.995%. Both strips share identical dimensions of 0.039×0.98×5.98 inches (1 mm × 25 mm × 152 mm), providing a compact yet robust platform for laboratory experiments, small‑scale production, and educational demonstrations.

Manufactured from high‑grade copper and zinc, the anodes exhibit excellent conductivity and resistance to oxidation, ensuring stable voltage output and uniform deposition during plating processes. The thin, flat geometry of the strips facilitates easy handling, precise placement, and consistent contact with cathodes, reducing the risk of uneven plating or localized heating.

Usage

These electrode strips are versatile enough to serve multiple user groups. In academic settings, they provide a reliable source material for chemistry and materials science labs, allowing students to explore fundamental concepts such as redox reactions, galvanic cells, and metal deposition. In industrial environments, the copper anode is frequently employed as a pre‑plating layer before nickel, gold, or silver coatings, while the zinc anode is commonly used for protective zinc plating on steel components to prevent corrosion.

Because the strips are sized for bench‑top equipment, they integrate seamlessly with standard electroplating rigs, power supplies, and cell containers. Users can immerse the anodes in a variety of electrolyte solutions, ranging from simple copper sulfate baths to more complex mixed‑metal plating solutions, without concern for rapid degradation or impurity contamination.

Beyond plating, the high‑purity zinc strips are ideal for sacrificial anode applications where they protect metal structures from atmospheric corrosion, especially in marine or humid environments. The copper strips, on the other hand, are suitable for creating conductive pathways in prototype circuitry or for use as reference electrodes in analytical instrumentation.

Why Choose Us

NIONSUPPLY has a long history of supplying high‑quality scientific components to laboratories and manufacturers worldwide. Our commitment to material purity is reflected in the rigorous testing protocols each batch of copper and zinc undergoes before shipment. By guaranteeing a minimum purity of 99.95% for copper and 99.995% for zinc, we ensure that users experience minimal impurity‑induced defects, such as pitting or uneven film growth.

Each anode strip is individually inspected for dimensional accuracy, surface smoothness, and structural integrity. The packaging dimensions (7.72 × 2.68 × 0.12 in) and lightweight design (2.47 oz) make storage and transport straightforward, reducing the risk of damage during handling.

Our customer support team is available to assist with technical questions, troubleshooting, and recommendations for optimal plating parameters. We also provide detailed safety data sheets (SDS) and usage guidelines to help users maintain a safe and compliant work environment.

Key Features

  • High‑purity copper (99.95%) and zinc (99.995%) for consistent, defect‑free plating results.
  • Compact 0.039×0.98×5.98 in dimensions enable easy integration with standard electroplating equipment.
  • Dual‑anode set provides flexibility for both copper pre‑plating and zinc sacrificial protection in one package.
  • Durable construction resists oxidation and maintains performance over multiple plating cycles.
  • Responsive technical support and detailed documentation ensure successful implementation.

FAQ

What purity levels are guaranteed for the copper and zinc anodes?

The copper anode is guaranteed to be at least 99.95% pure, while the zinc anode meets a minimum purity of 99.995%. These specifications are verified by independent laboratory analysis.

Can these strips be used for both small‑scale laboratory experiments and larger production runs?

Yes. The size and material quality make the strips suitable for bench‑top experiments, educational demonstrations, and also for pilot‑scale production where precise control of plating thickness is required.

Are there any special storage requirements to maintain the anodes’ purity?

Store the strips in a dry, cool environment, preferably in their original packaging to protect them from moisture and contaminants. Avoid direct exposure to corrosive gases or extreme temperatures.

What safety precautions should be taken when handling the zinc anode?

Wear appropriate personal protective equipment (gloves, goggles) and work in a well‑ventilated area. Zinc dust can be hazardous if inhaled, so avoid generating fine particles and follow the provided safety data sheet.

How do I determine the optimal plating voltage for these anodes?

Optimal voltage depends on the electrolyte composition, temperature, and desired coating thickness. As a general guideline, start with a low voltage (5–10 V) and adjust based on observed deposition rate and surface quality. Consult the plating solution manufacturer for specific recommendations.

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