Launch of New Functional Material Products Based on Nanotechnology
- Dec 10, 2025
- 1 min read
Updated: Feb 4

As part of a continued commitment to innovation and sustainable development of functional materials, a key milestone was successfully achieved this year through the launch of several new products based on nanotechnology and advanced materials. This achievement reflects significant progress in research, development, and downstream implementation of science- and technology-based products.
The newly launched products include:
MoS₂ Nanoflower A molybdenum disulfide–based material with a nanoflower structure designed to enhance surface area and functional activity, offering strong potential for applications in catalysis, sensing, and energy storage.
Cu-BTC (Copper Benzene-1,3,5-Tricarboxylate) A copper-based metal–organic framework (MOF) material characterized by high porosity, developed for applications in adsorption, gas separation, and molecular storage.
PPy (Polypyrrole) A conductive polymer developed to support applications in electronics, sensors, and other functional materials requiring electrical conductivity.
rGO-COOH (Carboxylated Reduced Graphene Oxide) A reduced graphene oxide material functionalized with carboxyl groups, offering improved dispersibility and chemical reactivity for applications in composites, sensors, and biomedical-related fields.
The launch of these products represents a successful integration of fundamental research and applied development. In addition to expanding the product portfolio, this achievement is expected to open opportunities for further collaboration with industrial and academic partners and to strengthen institutional contributions to the advancement of advanced material technologies.
Looking ahead, further development efforts will focus on performance optimization, production scale-up, and exploration of strategic applications aligned with market demands and future technological challenges.
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