平 山 科 技 PingShan Technology

創新科技 · 引領未來 Innovative Technology · Leading the Future

創新項目 Innovative Projects

Carbon Nanomaterials
碳納米材料 Carbon Nanomaterials

研發高性能碳納米材料,用於能源儲存和電子領域的創新應用。 Developing high-performance carbon nanomaterials for innovative applications in energy storage and electronics.

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Lithium Battery Materials
鋰電池負極材料 Lithium Battery Materials

開發高容量、長循環壽命的鋰電池負極材料,提升電池性能和安全性。 Developing high-capacity, long-cycle lithium battery anode materials to enhance battery performance and safety.

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Solar Materials
太陽能材料 Solar Materials

研究新型太陽能材料,提高光電轉換效率,推動可再生能源發展。 Researching new solar materials to improve photoelectric conversion efficiency and promote renewable energy development.

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Industrialization
產業化 Industrialization

將實驗室技術轉化為可規模化生產的工藝,促進創新技術的商業化應用。 Transforming laboratory technologies into scalable production processes to promote commercial applications of innovative technologies.

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Healthcare
醫療健康 Healthcare

開發醫療健康相關材料和應用,包括具有自潔功能的口罩等防護產品。 Developing healthcare-related materials and applications, including self-cleaning masks and other protective products.

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AI
人工智能 Artificial Intelligence

探索人工智能在材料科學和產業應用中的潛力,加速創新研發過程。 Exploring the potential of artificial intelligence in materials science and industrial applications to accelerate innovative R&D processes.

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專利技術 Patents

平山科技擁有多項創新專利,涵蓋碳納米材料、鋰電池材料和醫療健康等領域。 PingShan Technology holds numerous innovative patents covering carbon nanomaterials, lithium battery materials, healthcare, and more.

關於平山科技 About PingShan Technology

PingShan Technology

平山科技有限公司於2019年成立,以「創新與服務」為使命。我們主要研發碳納米材料技術及AI商業應用整合。

公司擁有多項碳納米材料和鋰電池材料方面的專利,並與頂尖的機構和製造商合作,進行創新技術的商業化和產業化。

作為一家擁有創新科技的公司,我們致力於向全球客戶提供最優質的產品和服務。我們將繼續投資研發領域,不斷開發新產品,為客戶帶來更多的應用價值,成就共贏局面。

PingShan Technology Co., Ltd was founded in 2019, with the mission of "innovation and services". We focus on the research and development of carbon nanomaterial technology and AI integration for business applications.

The company holds multiple patents for carbon nanomaterials and lithium battery materials and has partnered with leading institutions and manufacturers to commercialize and industrialize innovative technologies.

As a company with innovative technology, we strive to provide the highest-quality products and services to customers around the globe. We will continue investing in the research and development field, continuously developing new products, and bringing more application value to customers, achieving a win-win situation.

聯繫我們 Contact Us

如果您對我們的技術和產品感興趣,或有任何合作意向,歡迎與我們聯繫 If you're interested in our technologies and products, or have any cooperation intentions, please feel free to contact us

專利列表 Patent List

  • 2020/04: 一種納米硅碳納米管微球石墨複合結構負極材料及其製備方法
  • 2020/04: A nano-silicon carbon nanotube microsphere graphite composite structure anode material and its preparation method
  • 2020/04: 一種導電聚合物包覆的紅磷石墨複合結構負極材料及其製備方法
  • 2020/04: A conductive polymer-coated red phosphorus graphite composite structure anode material and its preparation method
  • 2020/07: 一種鋰硫電池複合正極及其製備方法
  • 2020/07: A lithium-sulfur battery composite cathode and its preparation method
  • 2020/07: 一種鋰錳電池用正極複合材料及其製備方法
  • 2020/07: A cathode composite material for lithium-manganese batteries and its preparation method
  • 2020/07: 一種作為鋰硫電池正極的石墨烯硫多孔微球複合材料及其製備方法
  • 2020/07: A graphene-sulfur porous microsphere composite material as a cathode for lithium-sulfur batteries and its preparation method
  • 2020/08: 一種生物質石墨烯及其製備方法和應用
  • 2020/08: A biomass graphene and its preparation method and application
  • 一種利用原位自生的催化劑在氧化亞硅表面催化生長碳納米管的方法
  • A method of using in-situ autogenous catalysts to catalyze the growth of carbon nanotubes on the surface of silicon suboxide
  • 一種金屬有機框架材料(MOF)提升於鋰硫電池循環性能的方法
  • A method of using metal-organic framework materials (MOF) to improve the cycling performance of lithium-sulfur batteries
  • 一種流動床CVD法製備納米硅/碳納米管複合負極的方法
  • A method for preparing nano-silicon/carbon nanotube composite anode by fluidized bed CVD method
  • 一種具有自潔功能的口罩的製備方法
  • A preparation method for a mask with self-cleaning function
  • 一種具有高導電性的生物質石墨烯的製備方法
  • A preparation method for biomass graphene with high conductivity