Introduction of materials developed by combining biodegradable resins, biomass-based resin technology, and organic-inorganic hybrid technology!
We have developed a new material that can be described as a biodegradable organic-inorganic hybrid resin derived from natural biomass, which is expected to improve properties such as mechanical strength by combining our biodegradable resin, biomass-based resin technology, and organic-inorganic hybrid technology. Organic materials, represented by plastics, are lightweight, easy to process, and possess flexibility and impact resistance. Inorganic materials such as silica and glass excel in durability and heat resistance but are heavy, vulnerable to impact, and have higher manufacturing costs compared to plastics. Organic-inorganic hybrid materials incorporate the advantages of both while minimizing their disadvantages, and they are expected to be used as various functional materials. 【Characteristics of Organic-Inorganic Hybrid Materials】 - Improved mechanical strength, thermal conductivity, and electrical properties - Increased refractive index for optical applications - Reduced thermal expansion coefficient - Gas permeability - Enhanced gas barrier properties *For more details, please refer to the PDF document or feel free to contact us.
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We are a chemical company that researches, develops, manufactures, and sells cutting-edge materials and technologies in the environmental and energy sectors aimed at building a decarbonized society. We are developing various advanced materials and technologies, including natural biomass-based biodegradable plastics (resins), biomass coating materials, biomass inks, next-generation solar cells, next-generation secondary batteries, next-generation fuel cells, quantum dots, metal-organic frameworks, ionic liquids, deep eutectic solvents, and cellulose nanofibers. Our original brand, Nano Sakura, under GS Alliance, significantly enhances the functional properties of raw materials by "compositing" cellulose nanofibers, which are the main component of plants, with various existing resin materials, resulting in an environmentally friendly, next-generation high-performance advanced material. We also offer products made from 100% natural materials derived from natural biomass waste resources such as wood, plants, bamboo, paper, recycled paper, seaweed, and starch, aiming for a grade with zero petroleum usage, striving to create materials that are as environmentally friendly as possible. We have been selected as a startup support program company by UNOPS, a United Nations-related organization. UNOPS S3i Innovation Centre Japan