Printed Batteries 2018
DOI: 10.1002/9781119287902.ch6
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Applications of Printed Batteries

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Cited by 2 publications
(1 citation statement)
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“…The advantages of printed batteries include (1) it is possible to develop more than one layer pattern of design in the battery fabrication [9,10], (2) Low cost and mechanically flexible batteries [11], (3) Thin and flexible energy storage [12] and (4) compatibility with the printing processes and devices [13]. Printed battery technologies find applications in the Internet of Things (IoT) devices [5], wearable electronic devices, smart cards, remote sensors, medical devices [9], microelectromechanical systems (MEMS) devices, low-power microprocessors, big-data analytics [14], electric vehicles, stationary storage grids [15], renewable energy and smart grid [16], etc.…”
Section: Printed Battery Technologymentioning
confidence: 99%
“…The advantages of printed batteries include (1) it is possible to develop more than one layer pattern of design in the battery fabrication [9,10], (2) Low cost and mechanically flexible batteries [11], (3) Thin and flexible energy storage [12] and (4) compatibility with the printing processes and devices [13]. Printed battery technologies find applications in the Internet of Things (IoT) devices [5], wearable electronic devices, smart cards, remote sensors, medical devices [9], microelectromechanical systems (MEMS) devices, low-power microprocessors, big-data analytics [14], electric vehicles, stationary storage grids [15], renewable energy and smart grid [16], etc.…”
Section: Printed Battery Technologymentioning
confidence: 99%