SCALABLE

作品数:384被引量:603H指数:10
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Ultra-resolution scalable microprinting
《Microsystems & Nanoengineering》2023年第3期195-207,共13页Callum Vidler Kenneth Crozier David Collins 
This work was performed in part at the Materials Characterisation and Fabrication Platform(MCFP)at the University of Melbourne and the Victorian Node of the Australian National Fabrication Facility(ANFF).We thank A.Barlow for assisting with the collection of helium ion microscopy images and R.Dagastine for the assistance with material development.Dr.David Collins is the recipient of a Discovery Early Career Researcher Award from the Australian Research Council(DECRA,DE200100909);funding from the National Health and Medical Research Council(Ideas,APP2003446);K.B.C.was supported by the Australian Research Council Centre of Excellence for Transformative Meta-Optical Systems(Project No.CE200100010).
Projection micro stereolithography(PµSL)is a digital light processing(DLP)based printing technique for producing structured microparts.In this approach there is often a tradeoff between the largest object that can be...
关键词:LITHOGRAPHY RESOLUTION PRINTING 
Thermally-curable nanocomposite printing for the scalable manufacturing of dielectric metasurfaces被引量:1
《Microsystems & Nanoengineering》2022年第4期73-80,共8页Wonjoong Kim Gwanho Yoon Joohoon Kim Heonyeong Jeong Yeseul Kim Hojung Choi Trevon Badloe Junsuk Rho Heon Lee 
the financial supports from the Technology Innovation program(20000887,Development of self-healing impact resistant film coating material and process technology for rollable displays)funded by the Ministry of Trade,Industry&Energy(MOTIE);the International Research&Development program(NRF-2019K1A47A02113032)of the National Research Foundation(NRF)funded by the Ministry of Science and ICT(MSIT)of the Korean government.J.R.acknowledges the POSCO-POSTECH-RIST Convergence Research Center program funded by POSCO;the LGD-SNU incubation program funded by LG Display;the NRF grants(NRF-2022M3C1A3081312,CAMM-2019M3A6B3030637,NRF-2019R1A5A8080290)funded by the MSIT of the Korean government.J.K.acknowledges the POSTECH Alchemist fellowship.Y.K.acknowledges the Hyundai Motor Chung Mong-Koo fellowship,and the NRF Ph.D.fellowship(NRF-2022R1A6A3A13066251)funded by the Ministry of Education of the Korean government.
Metasurfaces consisting of artificially designed meta-atoms have been popularized recently due to their advantages of amplitude and phase of light control.However,the electron beam lithography method for metasurface f...
关键词:surfaces DURABILITY RESIN 
Scalable and automated CRISPR-based strain engineering using droplet microfluidics被引量:1
《Microsystems & Nanoengineering》2022年第2期227-236,共10页Kosuke Iwai Maren Wehrs Megan Garber Jess Sustarich Lauren Washburn Zachary Costello Peter W.Kim David Ando William R.Gaillard Nathan J.Hillson Paul D.Adams Aindrila Mukhopadhyay Hector Garcia Martin Anup K.Singh 
supported by the Basque Government through the BERC 2014-2017 program and the Spanish Ministry of Economy and Competitiveness MINECO through the BCAM Severo Ochoa excellence accreditation SEV-2013-0323;Sandia National Laboratories is a multimission laboratory managed and operated by National Technology and Engineering Solutions of Sandia,LLC,a wholly owned subsidiary of Honeywell International,Inc.,for the U.S.Department of Energy's National Nuclear Security Administration under contract DE-NA-0003525.
We present a droplet-based microfluidic system that enables CRISPR-based gene editing and high-throughput screening on a chip.The microfluidic device contains a 10x10 element array,and each element contains sets of el...
关键词:operations GENERATING FLUID 
Scalable nanolaminated SERS multiwell cell culture assay被引量:1
《Microsystems & Nanoengineering》2020年第1期916-926,共11页Xiang Ren Wonil Nam Parham Ghassemi Jeannine S.Strobl Inyoung Kim Wei Zhou Masoud Agah 
The work was funded by the National Cancer Institute(NCI)under award number R21CA210216(M.A.);the AFOSR Young Investigator Award under award number FA9550-18-1-0328(W.N.,W.Z.);the Bradley Department of Electrical and Computer Engineering.
This paper presents a new cell culture platform enabling label-free surface-enhanced Raman spectroscopy(SERS)analysis of biological samples.The platform integrates a multilayered metal-insulator-metal nanolaminated SE...
关键词:LAMINATED CULTURE PREDICTION 
Scalable fabrication of sub-10 nm polymernanopores for DNA analysis被引量:2
《Microsystems & Nanoengineering》2019年第1期532-541,共10页Junseo Choi Charles C.Lee Sunggook Park 
This research was supported by the P41 Center for BioModular Multiscale Systems for Precision Medicine(P41EB020594)from the National Institutes of Health。
We present the first fabrication of sub-10 nm nanopores in freestanding polymer membranes via a simple,costeffective,high-throughput but deterministic fabrication method.Nanopores in the range of 10 nm were initially ...
关键词:process. POLYMER pores 
Scalable integration of nano-,and microfluidics with hybrid two-photon lithography被引量:3
《Microsystems & Nanoengineering》2019年第1期264-272,共9页Oliver Vanderpoorten Quentin Peter Pavan K.Challa Ulrich F.Keyser Jeremy Baumberg Clemens F.Kaminski Tuomas P.J.Knowles 
This work was supported by the Engineering and Physical Sciences Research Council[Grant numbers EP/L015889/1 and EP/L027151/1];the European research Council,the Winton Program for the Physics of Sustainability and the Newman Foundation;the NanoDTC for additional funding and the Maxwell Community for scientific support;This project has received funding from the European Union’s Horizon 2020 research and innovation program under Grant agreement No.674979-NANOTRANS;The work was partially funded by Horizon 2020 program through 766972-FET-OPEN-NANOPHLOW.U.F.K.acknowledges funding from an ERC Consolidator Grant(DesignerPores 647144).
Nanofluidic devices have great potential for applications in areas ranging from renewable energy to human health.A crucial requirement for the successful operation of nanofluidic devices is the ability to interface th...
关键词:LITHOGRAPHY INTEGRATION FLUID 
Glassy carbon microneedles-new transdermal drug delivery device derived from a scalable C-MEMS process被引量:1
《Microsystems & Nanoengineering》2018年第1期13-23,共11页Richa Mishra Bidhan Pramanick Tapas Kumar Maiti Tarun Kanti Bhattacharyya 
Because carbon is the basic element of all life forms and has been successfully applied as a material for medical applications,it is desirable to investigate carbon for drug delivery applications,as well.In this work,...
关键词:carbon process NEEDLE 
CAD/CAM for scalable nanomanufacturing:A network-based system for hybrid 3D printing
《Microsystems & Nanoengineering》2017年第1期135-145,共11页Hae-Sung Yoon Hyun-Taek Lee Ki-Hwan Jang Chung-Soo Kim Hyunseo Park Dae-Wook Kim Kunwoo Lee Sangkee Min Sung-Hoon Ahn 
This work was supported by the Brain Korea 21 Plus project at Seoul National University,the National Research Foundation of Korea(NRF)grants funded by the Ministry of Education,Science and Technology(Nos.NRF-2015R1A2A1A13027910,NRF-2016R1A6A3A03012011).
Micro-and nano-structuring have been highlighted over several decades in both science and engineering fields.In addition to continuous efforts in fabrication techniques,investigations in scalable nanomanufacturing hav...
关键词:Computer-aided design and manufacturing(CAD/CAM) NANOMANUFACTURING NETWORK-BASED 3D printing 
Scalable fabrication of microneedle arrays via spatially controlled UV exposure被引量:1
《Microsystems & Nanoengineering》2016年第1期73-81,共9页Hidetoshi Takahashi Yun Jung Heo Nobuchika Arakawa Tesuo Kan Kiyoshi Matsumoto Ryuji Kawano Isao Shimoyama 
This work was partially supported by Japan Science Technology Agency,Izumi Science and Technology Foundation,the Tateisi Science and Technology Foundation,and the Mazda Foundation
This paper describes a theoretical estimation of the geometry of negative epoxy-resist microneedles prepared via inclined/rotated ultraviolet(UV)lithography based on spatially controlled UV exposure doses.In compariso...
关键词:inclined/rotated lithography microneedle array UV exposure ratio 
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