Invited Seminar
We held a seminar on March 22, 2019, with an invited speaker. This speaker, Mauricio Terrones, is Distinguished Professor of Physics, Chemistry and Materials Science & Engineering with tenure at Penn State University. He is also the Founder Director of the Center for 2-Dimensional and Layered Materials at Penn State, and also the NSF-IUCRC Center for Atomically Thin Multifunctional Coatings (ATOMIC). He works on low dimensional materials that mainly involve 1- and 2-Dimensions, ranging from carbon nanotubes and graphene nanoribbons to graphene, boron nitride and chalcogenide monolayers (e.g. WS2, MoS2, NbS2 , etc). His group concentrates on challenging synthesis of novel nanoscale materials (1D and 2D) with unprecedented physico-chemical properties. In this lecture, he gave a lecture on 'Nanotechnology of Low-Dimensional Nano-Carbons: Form Doped Graphene to 3-D Hybrids and Biological Applications'.
● Date : Friday, March 22, 2019 AM 10:20
● Venue : Seminar Room, 5-203, College of Engineering
● Speaker : Mauricio Terrones,
(Professor of Physics, Chemistry and Materials Science & Engineering with tenure at Penn State University)
● Topic: Nanotechnology of Low-Dimensional Nano-Carbons: Form Doped Graphene to 3-D Hybrids and Biological Applications
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초청 세미나
2019년 3월 22일에 초빙 연사를 모시고 세미나를 진행했습니다.이번 연사인 Mauricio Terrones는 미국 Penn State University의 물리, 화학, 재료공학 교수이며, the Center for 2-Dimensional and Layered Materials와 the NSF-IUCRC Center for Atomically Thin Multifunctional Coatings를 이끌고 있습니다. 탄소 나노튜브, 그래핀 나노리본, 그래핀, 질화 붕소 등 1차원, 2차원 재료들을 중점적으로 연구하고 있으며, 지금까지 존재하지 않으며 뛰어난 물리화학적 특성을 갖는 나노 물질을 합성하기 위하여 노력하고 있습니다. 이번 강연에서는 ‘Nanotechnology of Low-Dimensional Nano-Carbons: Form Doped Graphene to 3-D Hybrids and Biological Applications’에 관한 주제로 강연을 진행했습니다.
● 일시 : 2019년 03월 22일(금) 오전 10:30
● 장소 : 공대5-203호 세미나실
● 연사 : Mauricio Terrones,
(Professor of Physics, Chemistry and Materials Science & Engineering with tenure at Penn State University)
● 주제 : Nanotechnology of Low-Dimensional Nano-Carbons: Form Doped Graphene to 3-D Hybrids and Biological Applications