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The layered structure of Gr/Si CuO QD electrode could be applied in next generation micro power sources.
Large specific area substrates by nanoarchitectured electrodes may therefore represent a promising alternative to improve the general performances of these micro power sources [1 3].
Micro heat engines have attracted considerable interest in recent years for their potential exploitation as micro power sources in microsystems and portable devices.
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MEMS fuel cell system with a weight specific energy density of 225 W h/kg was accomplished as an alternative micro power source.
In this context, the large specific area offered by nano-architectured electrodes represents a promising alternative to improve the general performances of these micro-power sources [1].
Micro-power sources that are comparable to or smaller than the size of the micro-devices needing power are needed for many applications.
While energy harvesting is commonly used for micro-power sources, it could be applied in macro-power sources using a large-scale harvester in a spacious area.
With the demand for greater energy from micro-power sources, LbL assembly assists in pioneering a new era in micro-batteries or micro-capacitors for thin film devices [90 95].
As a promising candidate for conventional micro-power sources, the micro-direct methanol fuel cell (μDMFC) is currently attracting increased attention due to its various advantages and prospective suitability for portable applications.
The demonstrator produced just under 20 W of electricity with thermal-to-acoustic and thermal-to-electric efficiencies of around 3.5% and 1.9%, respectively, which demonstrates the micro-power source concept.
The membraneless microfluidic fuel cell (MFC) is a promising micro-scale power source with potentially wide applications.
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