All In One modular R&D electrospinning system, 40 kV, multi-collector

Electrospinning for energy materials

Nanofibers give energy devices what they need most: huge surface area and interconnected porosity for ion and electron transport. Electrospun mats serve as separators, electrodes, and catalyst supports.

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  • Battery separators & electrodes

    Porous nanofiber mats improve ion transport and electrode surface area.

  • Supercapacitors

    High-surface-area carbon nanofibers boost charge storage.

  • Fuel cells & catalyst supports

    Nanofiber networks disperse catalysts and move reactants efficiently.

Multiple-needle electrospinning emitter, detail

Why Linari NanoTech

Multi-needle throughput for larger mats and support for carbon-precursor fibers (electrospin, then carbonize). Reproducible results, Made in Italy, with lab testing in Pisa.

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Published research in this field using Linari equipment

9 peer-reviewed publications indexed in Europe PMC name Linari electrospinning equipment in their Methods section for energy materials research, published between 2022 and 2026 in journals including Small, ChemSusChem and ACS Applied Polymer Materials. They cover reinforced proton- and anion-exchange membranes, lithium-ion battery separators, metal-free electrodes and piezoelectric fibres.

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Frequently asked questions

Can I electrospin carbon nanofibers for electrodes?

Yes. Electrospin a precursor such as PAN, then carbonize it to obtain carbon nanofibers.

Can I scale up electrode-mat production?

Yes. Multi-needle and industrial systems increase output for larger areas.