Ni95 Lithium-Ion Dry Pouch Cell 2 Ah 8/9-Layer ATOMFAIR®

$299.00

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 Ni95 dry pouch cell provides 2 Ah capacity, 3–4.3 V window, 8/9-layer stack, Li-Cu anode, and 12 μm PE + 2 μm ceramic separator. Order now.

SKU: AF-BM-C-95LC-20A0-6CC0
Category:

Ni95 Lithium-Ion Dry Pouch Cell (2 Ah, 8/9 Layers) – Li-Cu Composite Anode

Product Type: Research-grade dry pouch cell
Research-grade laboratory product

Product Overview

This Ni95 Lithium-Ion Dry Pouch Cell (2 Ah, 8/9 Layers) – Li-Cu Composite Anode is a 2 Ah electrolyte-free dry pouch cell using Ni95 as the cathode and Li-Cu as the anode architecture, with a 8/9-layer stack and a stated voltage window of 3 V – 4.3 V.

The positive electrode uses a 45.5 x 64 mm footprint with 27 mg/cm2 mg/cm2 coating areal density, while the negative electrode uses a 46.5 x 65 mm footprint. The separator is specified as 12 um PE + 2 um ceramic, and the page records the available electrode loading and specific-capacity parameters for laboratory comparison.

The unfilled pouch format is intended for lithium-ion laboratory assembly, electrolyte or activation studies, and electrochemical evaluation where researchers need to control the cell finishing conditions and compare electrode configurations.

Technical Specifications

Parameter Specification / Available Values
1. Core Cell Parameters
Atomfair Model AF-BM-C-95LC-20A0-6CC0
Nominal Capacity 2 Ah
Voltage Range 3 V – 4.3 V
Lamination Layers 8/9 layers
Separator 12 um PE + 2 um ceramic
2. Cathode Parameters
Material Type Ni95
Active Material Percent 97.4%
Specific Capacity 220 mAh/g
Compaction Density 3.3 g/cc
Coating Areal Density 27 mg/cm2
Dimensions 45.5 x 64 mm
3. Anode Parameters
Material Type Li-Cu
Dimensions 46.5 x 65 mm
Thickness Parameter 20+6+20 um

Cell Customization

Customization can cover cell dimensions, nominal capacity, cathode and anode materials, separator coating, and dry electrode configuration.
APPLICATION SCOPE: Laboratory lithium-ion cell assembly, electrolyte or activation studies, electrode comparison, and dry-core electrochemical evaluation.
ORDER CONFIRMATION: Confirm capacity, voltage window, layer count, electrode materials, dimensions, coating parameters, separator specification, and required quantity before quotation.

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LABORATORY PROCUREMENT SUPPORT
For model selection, technical specification confirmation, or quotation support, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Supplier: Atomfair
Brand: ATOMFAIR®

This electrolyte-free dry pouch cell must receive electrolyte before electrochemical activation. The unfilled cell is intended for laboratory lithium-ion assembly, electrolyte or activation studies, and dry-core electrochemical evaluation.

  • Activation prerequisite: Electrolyte must be introduced to the dry pouch cell before the cell is electrochemically activated or evaluated.
  • Dry-state handling: Store and handle the pouch cell in its supplied electrolyte-free, unfilled condition until the intended electrolyte or activation study begins.
  • Laboratory scope: Limit use of the dry pouch cell to laboratory lithium-ion assembly, electrolyte or activation studies, electrode comparison, and dry-core electrochemical evaluation.

The dry pouch cell is supplied unfilled and must be activated in a laboratory setting before electrochemical evaluation. These steps align with the product's stated laboratory assembly and electrolyte or activation study scope.

Required Equipment: Laboratory lithium-ion cell assembly equipment

  1. Confirm cell specifications
    Confirm capacity, voltage window, layer count, electrode materials, dimensions, coating parameters, separator specification, and required quantity before beginning assembly.
  2. Assemble the dry cell
    Integrate the unfilled dry pouch cell into the laboratory lithium-ion cell assembly workflow while preserving the electrolyte-free dry-core configuration.
  3. Introduce electrolyte
    Add the selected electrolyte to the dry pouch cell to initiate activation or begin electrolyte studies.
  4. Evaluate electrochemically
    Perform electrochemical evaluation of the activated cell within the stated voltage window.

What is the benefit of using a dry (electrolyte-free) Ni95 pouch cell for laboratory research?

The dry format allows researchers to control electrolyte composition, filling conditions, and activation protocols, enabling fundamental studies of electrolyte effects, electrode wetting, and formation processes as stated in the product description.

What key specifications must be cross-checked when ordering the Ni95 dry pouch cell for a specific experiment?

Per the manufacturer's order confirmation requirements, the capacity (2 Ah), voltage window (3–4.3 V), layer count (8/9), electrode materials (Ni95 cathode, Li-Cu anode), electrode dimensions (cathode 45.5×64 mm, anode 46.5×65 mm), cathode coating areal density (27 mg/cm²), separator specification (12 µm PE + 2 µm ceramic), and required quantity must be verified before procurement.

What is the specified voltage window of the Ni95 dry pouch cell and why is it important for electrolyte selection?

The voltage window is 3.0 V to 4.3 V. This range dictates that the electrolyte must be stable up to at least 4.3 V vs. Li/Li⁺ to avoid oxidative decomposition, a critical consideration for laboratory electrolyte studies as specified for the cell.

This 2 Ah electrolyte-free dry pouch cell pairs a Ni95 cathode specified at 97.4% active material and 220 mAh/g with a Li-Cu composite anode in an 8/9-layer stack, 12 µm PE + 2 µm ceramic separator, and a 3 V–4.3 V window. Supplied unfilled, it is a research-grade platform for controlled electrolyte filling, activation, and electrode-comparison studies.

Positive

  • Electrolyte-free dry pouch for controlled activation: The unfilled dry-pouch format lets researchers control electrolyte fill, formation, and finishing conditions, making it directly suited to electrolyte or activation studies and dry-core electrochemical evaluation.
  • Documented Ni95 cathode with high active loading: The Ni95 cathode is specified at 97.4% active material, 220 mAh/g specific capacity, 3.3 g/cc compaction density, and 27 mg/cm2 coating areal density, giving a reproducible baseline for electrode comparison and cell-level testing.

Trade-offs

  • Requires in-house electrolyte filling and activation: Because the cell is delivered electrolyte-free, the end user must perform electrolyte filling and cell finishing under appropriate dry or inert conditions before electrochemical testing can begin.
  • Final configuration must be confirmed at order level: Capacity, voltage window, layer count, electrode materials, dimensions, coating parameters, and separator specification are all order-confirmation items, so the delivered cell configuration is validated only after explicit technical confirmation.

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).

Quantity

1pc