Kyung Hee University · Materials Science
김준태 교수의 연구실은 생분해성 생물소재와 나노복합재를 중심으로, 치료 및 진단에 활용 가능한 친환경 나노소재 개발에 주력하고 있습니다. 특히 탄소점, 식물 섬유 기반 수지, 펙틴 및 알긴산 기반 생분해성 필름에 나노입자나 천연 에센셜 오일을 도입하여 의료·식품 포장 분야에서의 응용 가능성을 모색하고 있습니다. 생체적합성과 기능성 향상을 동시에 확보하는 지속 가능한 소재 설계가 핵심 연구 방향입니다.
Figures are computed from collected data and may differ slightly.
Recently, carbon dots (CDs) have been actively studied and reported for their various properties. In particular, the specific characteristics of carbon dots have been considered as a possible technique for cancer diagnosis and therapy. This is also a cutting-edge technology that offers fresh ideas for treating various disorders. Though carbon dots are still in their infancy and have not yet shown their value to society, their discovery has already resulted in some noteworthy advancements. The ap
Fully biodegradable, green composites were fabricated with ramie fibers and modified soy flour (MSF) resin. Defatted soy flour (SF) was modified by a lab-scale filtration system to improve its mechanical, interfacial, and thermal properties through increasing the protein content. The protein content of SF was increased from 53.1 to 67.5% by filtering out soluble sugars using a microfiber-based filter. Tensile stress and Young's modulus of MSF resins were 35.5 and 1411.7 MPa, respectively, which
Alginate-based antibacterial biocomposite films were prepared by incorporating with cinnamon essential oil nanoemulsions (CEO-NE). CEO-NE was first prepared by mixing and homogenizing the oil phase and aqueous phase containing polysorbate 80 (Tween 80), using a probe-type ultrasonication equipment. The biocomposite films were then prepared by incorporating the CEO-NE to an aqueous solution of alginate and glycerol, homogenizing, casting, and drying. The mean droplet size, zeta potential, and pol
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