Waseda University · 재료과학
Yoshiyuki Sugahara 교수의 연구실은 주로 나노구조 산화물 및 점토 기반 복합재료의 합성과 응용에 중점을 두고 있습니다. 특히 키토산 유사 점토와 고분자 간의 인터칼레이션을 통한 나노복합재료 개발, 그리고 투명한 산화물 나노판막(예: WO₃, TiO₂)의 고특이적 표면 구조를 활용한 광촉매 및 에너지 변환 소재 연구를 수행하고 있습니다. 이들은 나노구조 제어와 표면 화학적 상호작용을 기반으로 한 고성능 소재 설계에 특화되어 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Two-dimensional monoclinic WO(3) nanoplates with high specific surface areas are synthesized through a novel conversion process using tungstate-based inorganic-organic hybrid micro/nanobelts as precursors. The process developed involves a topochemical transformation of tungstate-based inorganic-organic hybrid belts into WO(3) nanoplates via an intermediate product of H(2)WO(4) nanoplates, utilizing the similarity of the W-O octahedral layers in both H(2)WO(4) and WO(3). The as-obtained WO(3) nan
Although tremendous effort has been directed to synthesizing advanced TiO2 , it remains difficult to obtain TiO2 exhibiting a photocatalytic efficiency higher than that of P25, a benchmark photocatalyst. P25 is composed of anatase, rutile, and amorphous TiO2 particles, and photoexcited electron transfer and subsequent charge separation at the anatase-rutile particle interfaces explain its high photocatalytic efficiency. Herein, we report on a facile and rational hydrothermal treatment of P25 to
Abstract A kaolinite-polymer intercalation complex was apparently formed for the first time by the polymerization of acrylonitrile between the kaolinite layers. A kaolinite-ammonium acetate intercalation complex was dispersed in acrylonitrile monomer. The monomer was apparently incorporated between the layers by displacing intercalated ammonium acetate. After the removal of excess monomer, the intercalation complex was heated to cause polymerization. The resulting kaolinite-polyacrylonitrile (PA
Abstract Acrylamide has been polymerized between the layers of kaolinite by heat treatment. Acrylamide monomer was first intercalated by the displacement reaction between a kaolinite-N-methylformamide (NMF) intercalation compound and a 10% acrylamide aqueous solution. The resulting intercalation compound showed a basal spacing of 11.3 Å. Infrared (IR) spectroscopy and 13 C nuclear magnetic resonance spectroscopy with cross polarization and magic angle spinning ( 13 C CP/MAS-NMR) indicated the re