2015
DOI: 10.1038/srep10257
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High-speed roll-to-roll manufacturing of graphene using a concentric tube CVD reactor

Abstract: We present the design of a concentric tube (CT) reactor for roll-to-roll chemical vapor deposition (CVD) on flexible substrates, and its application to continuous production of graphene on copper foil. In the CTCVD reactor, the thin foil substrate is helically wrapped around the inner tube, and translates through the gap between the concentric tubes. We use a bench-scale prototype machine to synthesize graphene on copper substrates at translation speeds varying from 25 mm/min to 500 mm/min, and investigate the… Show more

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Cited by 164 publications
(107 citation statements)
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“…Besides the aforementioned vacuum filtration and direct evaporation methods, there are also some other top-down methods to fabricate GFs, such as spray coating [24,49,50], spin casting [51,52], and roll-to-roll manufacturing [53]. For instance, Xin et al [40] adopted a novel approach integrating electron-spray deposition (ESD) and a roll-to-roll device to manufacture the free-standing GFs with large area; the process is illustrated in Figure 2.…”
Section: Other Assembling Methodsmentioning
confidence: 99%
“…Besides the aforementioned vacuum filtration and direct evaporation methods, there are also some other top-down methods to fabricate GFs, such as spray coating [24,49,50], spin casting [51,52], and roll-to-roll manufacturing [53]. For instance, Xin et al [40] adopted a novel approach integrating electron-spray deposition (ESD) and a roll-to-roll device to manufacture the free-standing GFs with large area; the process is illustrated in Figure 2.…”
Section: Other Assembling Methodsmentioning
confidence: 99%
“…The obtained graphene/PET films display the sheet resistance of 0.1–7 × 10 5 Ω sq −1 with average transmittance of 95.2% in the visible region. In addition, the roll‐to‐roll CVD on flexible substrates can be realized by a concentric tube, in which the thin foil substrate is helically wrapped around the inner tube, and translates through the gap between the concentric tubes . Furthermore, a roll‐to‐roll CVD toward nanoporous atomically thin membranes has been accomplished with a two zone roll‐to‐roll graphene CVD reactor, which sequentially exposes the moving foil substrate to annealing and growth atmospheres …”
Section: Graphenementioning
confidence: 99%
“…Significant progress has been made in 2D crystal growth [1][2][3], and monolayer graphene crystals beyond the cm-scale [4] and continuous films over areas just limited by the growth reactor geometry [5][6][7] are now routinely achieved by chemical vapour deposition (CVD). The graphene CVD process utilises a catalytic substrate to achieve high crystallinity [2,[8][9][10] and for the majority of emerging applications the graphene has to be released from this parent growth substrate and transferred into the device stack.…”
Section: Introductionmentioning
confidence: 99%