ATOMFAIR® NVP-D05 SODIUM VANADIUM PHOSPHATE (NVP) ELECTRODE SHEETRESEARCH GRADE MATERIAL | DRY PROCESS
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TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official quotations.
EMAIL: inquiry@atomfair.com
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Manufacturer: Atomfair LLC
Brand: ATOMFAIR®
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This electrode sheet requires strict environmental preservation to maintain structural integrity. A standard baking protocol of 12 hours under vacuum at 100°C is mandatory before cell integration to eliminate atmospheric volatiles.
- Pre-Integration Baking Protocol: Bake the electrode sheet for 12 hours at 100°C under vacuum to remove adsorbed atmospheric volatiles before cell assembly.
How does the dry process used in the Atomfair NVP-D05 electrode sheet achieve a high coating density without compromising electrochemical performance?
The dry process enables an ultra-high coating density of 60 mg/cm² while maintaining structural integrity and electrochemical accessibility across thick interfaces. The sheet features a 94.50% active material ratio, a compaction density of 1.22 g/cm³, and a specific capacity of 110 mAh/g, ensuring high performance in sodium-ion battery R&D.
What substrate material is used in the Atomfair NVP-D05 electrode sheet and how does it support sodium-ion battery performance?
The substrate is carbon-coated aluminum foil with an areal density of 4.4 mg/cm² and a total thickness of 12 + 0.5 + 0.5 μm. The carbon coating optimizes charge transfer kinetics and maximizes interface stability under aggressive loading profiles, enhancing overall conductivity.
What pre-treatment is required for the Atomfair NVP-D05 electrode sheet before integrating into a sodium-ion battery cell?
Dry processed structural layers require strict environmental preservation. A standard baking protocol of 12 hours under vacuum at 100°C is necessary before formal cell integration to eliminate atmospheric volatile profiles and ensure batch consistency.
This NVP-D05 electrode sheet employs a dry process to achieve an ultra-high double-sided coating density of 60 mg/cm² with 94.5% active material loading, designed for high-performance sodium-ion battery R&D and material characterization, though it requires a 12-hour vacuum baking preconditioning and is restricted to laboratory use.
Positive
- Ultra-High Coating Density via Dry Process: The dry process enables a double-sided coating density of 60 mg/cm² while preserving structural integrity and electrochemical accessibility across thick interfaces, critical for high-mass-loading evaluations.
- Enhanced Conductivity and Stability: Carbon-coated aluminum substrate optimizes charge transfer kinetics and interface stability under aggressive loading, improving performance in advanced sodium-ion battery benchmarking.
Trade-offs
- Required Pre-Conditioning Protocol: Dry processed layers require strict environmental preservation; a 12-hour vacuum baking at 100°C is necessary before cell integration to remove atmospheric volatiles.
- Restricted to Laboratory Research: This electrode sheet is sold exclusively for R&D purposes, not for commercial production, limiting its application scope.
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).







