凯发

Speaker-Deng Pan

Deng Pan
President


Dr. Deng Pan graduated from the University of California, Irvine in 2014 with a Ph.D. degree. He is currently an off-campus mentor for professional degree graduate students at Shenzhen University, holds the associate senior professional title of Graphene Materials at AECC BIAM, serves as Chief Expert of Sensors at AECC Beijing Institute of Graphene Technology, and is the President of Shenzhen Graphene Insitute and Chairman of Shenzhen Huaneng Graphene Technology Co., Ltd.

Dr. Pan Deng has been engaged in the research and development of graphene-based new materials for many years. To meet the needs of civilian material development, he has innovatively pioneered 12 application research directions and industrial transformations of graphene, obtaining over 100 international and domestic invention patents. Dr. Pan Deng has incubated a series of graphene-enhanced resin material projects and graphene environmental purification material projects, developing products such as "Graphene Antibacterial Preservation Film", "Graphene Biodegradable Food Containers", and "Graphene Fibers".

Title:Research Progress on Advanced Graphene Resin Matrix Composites
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Abstract



This report provides an in-depth introduction to Shenzhen Huaneng Graphene Technology Co., Ltd., which was incubated and established based on the graphene resin-based composite technology of AECC Beijing Institute of Graphene Technology. The company has innovatively developed graphene composite resin masterbatches with antibacterial properties, high barrier characteristics, high strength characteristics, and other functions, as well as graphene composite functional fibers, becoming a global leading supplier of high-performance functional fiber industry solutions.

Leveraging graphene's unique two-dimensional nanostructure and carbon atom characteristics, graphene composite polymer materials utilize pure physical sterilization principles such as the nano-knife effect and multiple synergistic mechanisms to directly disrupt bacterial cell walls, block their growth and reproduction, and exhibit excellent broad-spectrum antibacterial and antiviral capabilities along with superior biocompatibility—far surpassing traditional chemical antimicrobial agents. The antibacterial performance of graphene composite antimicrobial masterbatches can reach over 99.9%, demonstrating excellent low-cost and high-performance product advantages through water resistance, wash durability, and heat resistance. To meet market demands for high-end textiles emphasizing comfort, hygiene, and wellness, the company has developed various products including graphene polyester fibers, graphene polyester filament fibers, and graphene cloud velvet fibers. These functional fibers feature efficient antibacterial/antiviral properties, mite elimination and odor suppression capabilities, far-infrared heating functions, UV protection, and negative ion generation. Certified by multiple testing institutions including SGS, these functional fibers demonstrate over 99% antibacterial efficacy, 92% infrared emissivity, and temperature elevation effects exceeding 5.1°C—significantly outperforming many current market functional fibers. Body temperature far infrared function helps to accelerate the surface temperature of the skin, make capillaries dilate, improve the body microcirculation, to achieve the health care effect on the human body, has been widely praised by the market



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E-mail: meeting@c-gia.org

Abstract: Minyang Lu

Sponsor: Wenyang Yang

Media: Liping Wang

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