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dc.contributor.author김우희-
dc.date.accessioned2019-11-21T06:43:14Z-
dc.date.available2019-11-21T06:43:14Z-
dc.date.issued2019-04-
dc.identifier.citationACS APPLIED MATERIALS & INTERFACES, v. 11, No. 18, Page. 16804-16814en_US
dc.identifier.issn1944-8244-
dc.identifier.issn1944-8252-
dc.identifier.urihttps://pubs.acs.org/doi/abs/10.1021/acsami.8b19955-
dc.identifier.urihttps://repository.hanyang.ac.kr/handle/20.500.11754/113241-
dc.description.abstractReduced graphene oxide (RGO) obtained from graphene oxide has received much attention because of its simple and cost-effective manufacturing process. Previous studies have demonstrated the scalable production of RGO with relatively high quality; however, irreducible defects on RGO deteriorate the unique intrinsic physical properties of graphene, such as high-mobility electrical charge transport, limiting its potential applicability. Using the enhanced chemical reactivity of such defects, atomic layer deposition (ALD) can be a useful method to selectively passivate the defect sites. Herein, we analyzed the selective formation of Pt by ALD on the defect sites of RGO and investigated the effect of Pt formation on the electrical properties of RGO by using ultrafast terahertz (THz) laser spectroscopy. Time-resolved THz measurements directly corroborated that the degree of the defect-recovering property of ALD Pt-treated RGO appearing as Auger-type sub-picosecond relaxation, which is otherwise absent in pristine RGO. In addition, the conductivity improvement of Pt-recovered RGO was theoretically explained by density functional theory calculations. The ALD Pt-passivated RGO yielded a superior platform for the fabrication of a highly conductive and transparent graphene heater. By using the ALD Pt/RGO heater embedded underneath scratched self-healing polymer materials, we also demonstrated the effective recovery property of self-healing polymers with high-performance heating capability. Our work is expected to result in significant advances toward practical applications for RGO-based flexible and transparent electronics.en_US
dc.description.sponsorshipThis research was supported by Basic Science Research Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Education (2016R1D1A1B03935611) and the MOTIE (Ministry of Trade, Industry & Energy) (10080643) and KSRC (Korea Semiconductor Research Consortium) support program for the development of the future semiconductor device. It was also supported by the National Research Foundation of Korea (NRF) through the government of Korea (MSIP) (Grant No. NRF-2018R1A2A1A05079060). This research is supported by "Rediscovery of the Past R&D Result" through the Ministry of Trade, Industry and Energy (MOTIE) and the Korea Institute for Advancement of Technology (KIAT) (Grant No. P0004074).en_US
dc.language.isoen_USen_US
dc.publisherAMER CHEMICAL SOCen_US
dc.subjectreduced graphene oxideen_US
dc.subjectatomic layer depositionen_US
dc.subjectPten_US
dc.subjectdefect recoveryen_US
dc.subjectRGO heateren_US
dc.subjectself-healing polymeren_US
dc.titleAnalysis of Defect Recovery in Reduced Graphene Oxide and Its Application as a Heater for Self-Healing Polymersen_US
dc.typeArticleen_US
dc.relation.no18-
dc.relation.volume11-
dc.identifier.doi10.1021/acsami.8b19955-
dc.relation.page16804-16814-
dc.relation.journalACS APPLIED MATERIALS & INTERFACES-
dc.contributor.googleauthorKim, Hyun Gu-
dc.contributor.googleauthorOh, Il-Kwon-
dc.contributor.googleauthorLee, Seungmin-
dc.contributor.googleauthorJeon, Sera-
dc.contributor.googleauthorChoi, Hyunyon-
dc.contributor.googleauthorKim, Kwanpyo-
dc.contributor.googleauthorYang, Joo Ho-
dc.contributor.googleauthorChung, Jae Woo-
dc.contributor.googleauthorLee, Jaekwang-
dc.contributor.googleauthorKim, Woo-Hee-
dc.contributor.googleauthorLee, Han-Bo-Ram-
dc.relation.code2019002549-
dc.sector.campusE-
dc.sector.daehakCOLLEGE OF ENGINEERING SCIENCES[E]-
dc.sector.departmentDEPARTMENT OF MATERIALS SCIENCE AND CHEMICAL ENGINEERING-
dc.identifier.pidwooheekim-
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COLLEGE OF ENGINEERING SCIENCES[E](공학대학) > MATERIALS SCIENCE AND CHEMICAL ENGINEERING(재료화학공학과) > Articles
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