期刊
SMALL
卷 13, 期 2, 页码 -出版社
WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.201600137
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资金
- Basic Science Research Program through the National Research Foundation (NRF), South Korea - Ministry of Science, ICT & Future Planning, South Korea [2013R1A1A1076117, 2014R1A2A1A01005862]
- Priority Research Centers Program through the NRF - Ministry of Education, South Korea [2012R1A6A1029029]
- Ministry of Trade, Industry and Energy (MOTIE)
- Korea Institute for Advancement of Technology (KIAT) through the International Cooperative RD program
- Brain Korea 21 PLUS project Center for Creative Industrial Materials
- National Research Foundation of Korea [2014R1A2A1A01005862, 2012R1A6A1029029, 2013R1A1A1076117, 22A20153213471] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
The fountain pen approach, as a means for transferring materials to substrates, has shown numerous incarnations in recent years for creating 2D micro/nanopatterns and even generating 3D free-form nanostructures using a variety of material inks. While the idea of filled reservoirs used to deliver material to a substrate via a capillary remains unchanged since antiquity, the advent of precise micromanipulation systems and functional material inks allows the extension of this mechanism to more high-tech applications. Herein, the recent growth in meniscus guided fountain pen approaches for benchtop micro/nanofabrication, which has occurred in the last decade, is discussed. Particular attention is given to the theory, equipment, and experimentation encompassing this unique direct writing approach. A detailed exploration of the diverse ink systems and functional device applications borne from this strategy is put forth to reveal its rapid expansion to a broad range of scientific and engineering disciplines. As such, this informative review is provided for researchers considering adoption of this recent advancement of a familiar technology.
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