Abstract:The design of multifunctional
nanostructured materials is the key
to the development of smart wearable devices. For instance, nanostructures
endowed with both piezoelectric and photocatalytic activities could
well be the workhorse for solar-light-driven self-cleaning wearable
sensors. In this work, a simple strategy for the assembly of a flexible,
semitransparent piezophotocatalytic system is demonstrated by leveraging
rational wet chemistry synthesis of ZnO-based nanosheets/nanoflowers
(NSs/NFs) under basic p… Show more
This work proposes a method to produce zinc oxide-based pressure sensors. It combines flexographic printing for seed layer deposition and patterning with microwave-assisted growth of 1D structures to develop stable sensors with high output voltages.
This work proposes a method to produce zinc oxide-based pressure sensors. It combines flexographic printing for seed layer deposition and patterning with microwave-assisted growth of 1D structures to develop stable sensors with high output voltages.
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