Transiting advanced materials from lab research to large-scale production involves multiple phases: materials research, process validation, equipment matching, and engineering scale-up.
In recent years, Boyee has consistently engaged in industry-academia-research collaboration with universities, research institutes, and specialist R&D teams to advance technological research and industrialization in areas including advanced battery materials, nanogrinding and dispersion, carbon nanotubes, solid-state electrolytes, and nanocellulose.
1. Grinding of Nanoscale and Ultrafine Powders
Boyee has collaborated with Shenzhen University of Technology to conduct research on grinding processes for ultrafine grnding of advanced battery material powders, focusing on the relationships among particle size reducion, dispersion performance, grinding parameters, and engineering scale-up, providing technical support for the nanoscale preparation of advanced battery materials.
2. Carbon Nanotube Composite Conductive Additives
Boyee is collaborating with university research institute teams on process development for carbon nanotube composite conductive additives, focusing on core technical challenges including deagglomeration, uniform dispersion, and material structural stability, to provide process technology support for carbon nanotube powder processing and slurry preparation.
Pictured: Boyee Industrial's Conductive Paste Production Line Solution
3. Sulfide Solid-State Electrolytes
Boyee has established technical collaborations with advanced lithium-ion battery research teams at domestic universities to develop and industrialize sulfide solid-state electrolyte materials.
Research focuses on key challenges of the industrialization process for sulfide solid-state electrolytes, including moisture and oxygen control, material dispersion, sealed material conveying, and engineering scale-up. This collaboration promotes the coordinated validation of material processes and equipment technologies, providing technical support for the large-scale production of solid-state electrolytes.
Pictured: Boyee Industrial's Sulfide Solid-State Electrolytes Production Line Solution
4. Expanding the Applications of Nanomaterials
Focusing on nanocellulose preparation, Boyee has partnered with relevant research teams to tackle key process challenges including deagglomeration, dispersion, and structural preservation, and further expanding the application of nanogrinding and dispersion technologies across various material systems.
At the same time, Boyee has established a graduate student professional practice base in collaboration with the School of Materials Science and Engineering at Hunan University, continuously strengthening the synergy among scientific research, talent development, and industrial practice.
5. From Scientific Validation to Industrial Application
Boyee continues to build a technology translation pathway: Materials Research → Process Validation → Core Equipment → Engineering Scale-Up → Industrial Application.
Leveraging its nanogrinding and dispersion technologies, experimental validation platforms, core equipment R&D, and turnkey engineering capabilities, Boyee continuously bridges the gap between scientific research achievement and industrial demands, providing equipment, process solutions, and engineering support to facilitate the transition of advanced materials from laboratory research to industrial-scale manufacturing.
Industry-university-research collaboration brings R&D closer to practical industrial demands. Boyee continues to drive the industrialization of advanced materials technologies.

