Nickel Oxide Anode Current Collector Slurry 1 kg ATOMFAIR®

$977.00

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Research-grade NiO anode current collector slurry, 1 kg, with 60–75 wt.% solids, <5 μm fineness and 600–1500 mPa·s viscosity. Order now.

SKU: AF-SO-S-SLRY-NIOA-V615
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Nickel Oxide Anode Current Collector Slurry, 1 kg | ATOMFAIR

Product Type: SOC anode current collector slurry
Research-grade laboratory product

Product Overview

The ATOMFAIR® Nickel Oxide Anode Current Collector Slurry is formulated with NiO as the functional phase, with a solid content of 60–75 wt.%, a fineness of <5 μm, and a viscosity ranging from 600–1500 mPa·s. Designed for screen-printing deposition on anode supports, it provides a highly porous and conductive Ni network after reduction, minimizing ohmic losses and improving current collection efficiency. The paste is optimized with organic additives and homogenization processes to ensure excellent thixotropy, sharp edge definition, and good adhesion to the underlying anode layer.

Performance Features

  • High electronic collection: Dense Ni network ensures low resistance current extraction.

  • Excellent printability: Controlled viscosity and fineness enable fine-line screen printing.

  • Good adhesion strength: Bonding with anode support prevents delamination during operation.

  • Controlled porosity: Open structure facilitates fuel gas diffusion to the active anode.

Technical Specifications

Parameter Specification / Available Values
Atomfair Model AF-NIO-CCS
Form / Morphology Screen-printable slurry
Color Green
Material / Composition NiO
Solids Content 60-75%
Fineness <5 μm
Viscosity 600-1500 mPa.s
Mass 1 kg (for other specifications, please contact our customer service)
Application Scope: Solid Oxide Cells (SOCs), anode current collector layers, screen-printing deposition on anode supports, high-current-collection applications requiring low ohmic losses and porous Ni network structures.
Packaging: Professional research-grade packaging designed to ensure product integrity during storage and transport.
Important Notice: Store in a cool, dry environment. Keep containers tightly sealed when not in use to prevent solvent evaporation, viscosity drift, and contamination.
LABORATORY PROCUREMENT SUPPORT
For model selection, accessory matching, platform compatibility or configuration confirmation, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

Store in a cool, dry environment and keep containers tightly sealed to prevent solvent evaporation and viscosity drift. Use within the specified viscosity range and ensure proper adhesion to the anode support to avoid delamination during operation.

  • Storage Conditions: Store the slurry in a cool, dry environment and keep containers tightly sealed to prevent solvent evaporation and viscosity drift.
  • Viscosity Constraint: Use the slurry within the specified viscosity range of 600–1500 mPa·s to ensure optimal screen-printing performance.
  • Adhesion Requirement: Ensure proper adhesion of the slurry to the anode support to prevent delamination during operation.
  • Reduction Process: Reduce the printed slurry to form a porous Ni network for effective current collection.
  • Contamination Prevention: Avoid contamination during handling to maintain the slurry's integrity and prevent defects.

How does the fineness (<5 μm) and viscosity (600–1500 mPa·s) of the Nickel Oxide Anode Current Collector Slurry affect its screen-printing performance and final Ni network quality?

The slurry's fineness below 5 μm ensures smooth printing and fine-line resolution, while the viscosity range of 600–1500 mPa·s provides controlled thixotropy for sharp edge definition. After reduction, these parameters contribute to a dense, porous Ni network that minimizes ohmic losses and enhances current collection efficiency.

Is this NiO slurry compatible with standard NiO-YSZ anode supports used in solid oxide cells?

Yes, the slurry is specifically designed for screen-printing deposition on anode supports typical of solid oxide cells (SOCs). While the source does not specify the exact anode support composition, the NiO functional phase and organic additives are optimized to bond with common SOC anode materials, such as NiO-YSZ cermets, ensuring good adhesion and preventing delamination during operation.

What storage conditions are required to maintain the viscosity and printability of this NiO slurry?

Store the slurry in a cool, dry environment and keep containers tightly sealed when not in use to prevent solvent evaporation, viscosity drift, and contamination. These conditions ensure the slurry remains within its specified viscosity range of 600–1500 mPa·s and maintains its thixotropic properties for consistent screen-printing performance.

The ATOMFAIR Nickel Oxide Anode Current Collector Slurry is a screen-printable NiO paste with 60–75 wt% solids and <5 μm fineness, engineered to form a porous, low-resistance Ni network after reduction for efficient current collection in SOC anode supports; it demands tightly sealed, cool storage and a post-print reduction step.

Positive

  • Low-resistance dense Ni network: After reduction, the NiO slurry yields a dense Ni network that minimizes ohmic losses and improves current collection efficiency.
  • Screen-printable thixotropic rheology: Controlled viscosity (600–1500 mPa·s) and fineness (<5 μm) enable fine-line screen printing with sharp edge definition and good adhesion to the anode support.

Trade-offs

  • Sealed cool storage required: Solvent evaporation from improperly sealed containers causes viscosity drift and contamination; storage must be cool and dry with tightly closed lids.
  • Reduction step required for conductivity: The printed NiO layer becomes a conductive Ni network only after a reduction treatment, so an additional process step is necessary for current collector functionality.

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).