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作品数:54被引量:55H指数:4
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Cost-effective fabrication of liquid metals via a laser induced graphene stamp for highly-stretchable integrated optoelectronics
《Nano Research》2024年第8期7603-7613,共11页Weiqi Sun Li Xiang Zebang Luo Hui Wang Dong Li Anlian Pan 
supported by the National Natural Science Foundation of China(Nos.62101181,2221001,62090035,52372146,U22A20138,and U19A2090);the National Key Research and Development Program(Nos.2022YFA1204300 and 2022YFA1402501);Natural Science Foundation of Hunan Province(No.2023JJ20016);the Key Program of Science and Technology Department of Hunan Province(Nos.2019XK2001 and 2020XK2001);the Key Research and Development Plan of Hunan Province(No.2023GK2012);the Science and Technology Innovation Program of Hunan Province(No.2021RC3061);the Open Project Program of Key Laboratory of Nanodevices and Applications,Suzhou Institute of Nano-Tech and Nano-Bionics,Chinese Academy of Sciences(No.22ZS01).
Stretchable electronics have found widespread applications in various fields such as wearable electronics,soft robots,and bioelectronics.As an important promising alternative of traditional rigid conductors,liquid met...
关键词:liquid metal WETTABILITY selective adhesion transfer printing stretchable electronics 
Multiaxially-stretchable kirigami-patterned mesh design for graphene sensor devices被引量:5
《Nano Research》2020年第5期1406-1412,共7页Hyo Chan Lee Ezekiel YHsieh Keong Yong SungWoo Nam 
S.N.gratefully acknowledges support from the AFOSR(Nos.FA2386-17-l-4071,FA9550-18-1-0405);KRICT(No.GOIKRICT KK1963-807);NSF(Nos.ECCS-1935775,CMMI-1554019,MRSEC DMR-1720633);NASA ECF(No.NNX16AR56G);ONR YIP(No.N00014-17-1-2830)and JITRI.Experiments were carried out in part in the Materials Research Laboratory Central Research Facilities,and Micro and Nano Technology Laboratory at the University of Illinois at Urbana-Champaign.
In wearable electronics,significant research has gone into imparting stretchability and flexibility to otherwise rigid electronic components while maintaining their electrical properties.Thus far,this has been achieve...
关键词:kirigami MESH strain-insensitive WEARABLE GRAPHENE GLUCOSE 
Parallel boron nitride nanoribbons and etch tracks formed through catalytic etching
《Nano Research》2018年第9期4874-4882,共9页Armin Ansary Mohsen Nasseri Mathias J. Boland Douglas R. Strachan 
One-dimensional (1D) catalytic etching was investigated in few-layer hexagonal boron nitride (hBN) films. Etching of hBN was shown to share a number of similarities with that of graphitic films. As in graphitic fi...
关键词:hexagonal(hBN) one-dimensional catalytic etching HYDROGENATION etch tracks NANORIBBONS 
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