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- W2081780370 abstract "For high-resolution printing, we have developed a novel way of functional microdots deposition based on laser-induced forward transfer, which is referred to laser-induced dot transfer (LIDT). LIDT is one of promising additive manufacturing techniques because it can realize flexible patterning of micron and submicron-sized dots at atmospheric room-temperature conditions. Recently we have achieved printing of functional oxide microdots by a double-pulse LIDT with the first pulse for preheat and the second pulse for transfer, resulting in more precise control of laser-induced hightemperature and thermal-stress in a source film. In this paper, temporal temperature distributions during the transfer process have been investigated using a finite element method approach. High-resolution printing of functional microdots is promising for future optoelectronic integrations." @default.
- W2081780370 created "2016-06-24" @default.
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- W2081780370 date "2015-03-04" @default.
- W2081780370 modified "2023-09-23" @default.
- W2081780370 title "High-resolution printing of functional microdots by double-pulse laser-induced forward transfer" @default.
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- W2081780370 doi "https://doi.org/10.1117/12.2077527" @default.
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