July 2026

Modular Lab Continuous Reaction System for Advanced New Energy Material Research

With the rapid development of lithium battery materials, solid-state batteries and nano functional materials, laboratory small-scale synthesis equipment needs higher integration, precise process control and flexible expandability. This modular lab continuous reaction system is tailor-made for material co-precipitation experiments, formula screening and process exploration. Overall System Composition The complete set of equipment consists of dual […]

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Key process and equipment parameters control sphericity and particle size distribution of ternary cathode precursors during co-precipitation synthesis.

Key Process & Equipment Parameters Affecting Sphericity and PSD of Ternary Cathode Precursors in Co-Precipitation Synthesis Ternary NCM and NCA hydroxide precursors serve as critical intermediate materials for high-energy lithium-ion battery cathode materials. Physical characteristics of precursors including sphericity, particle size distribution, tap density and morphological uniformity exert decisive influences on the final electrochemical performance

Key process and equipment parameters control sphericity and particle size distribution of ternary cathode precursors during co-precipitation synthesis. Read More »

Industry-Academia Collaboration In Action: University Team Conducts Ternary Precursor Synthesis Experiments With Our Pilot Reactor

     It’s a rewarding and meaningful day for our technical team as we warmly received a faculty-led student research group from university at our new energy material R&D pilot workshop. The core purpose of this visit is to carry out complete hands-on experimental research on the co-precipitation synthesis of lithium battery ternary precursors with

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Aligning with national key research priorities | Suzhou Zero Two Three provides full-chain support for the industrialization of lithium-rich manganese-based materials, silicon-based anodes and solid electrolytes

Recently, the First Equipment Industry Department of the Ministry of Industry and Information Technology (MIIT) clearly stated that it will pool resources to intensify technological research on three core materials: lithium-rich manganese-based cathodes, silicon-based anodes and solid electrolytes. It will strive to make breakthroughs in key technologies for all-solid-state batteries and consolidate the high-quality development

Aligning with national key research priorities | Suzhou Zero Two Three provides full-chain support for the industrialization of lithium-rich manganese-based materials, silicon-based anodes and solid electrolytes Read More »

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