Energy harvesting in implantable and wearable medical devices for enduring precision healthcare

MMH Shuvo, T Titirsha, N Amin, SK Islam - Energies, 2022 - mdpi.com
Modern healthcare is transforming from hospital-centric to individual-centric systems.
Emerging implantable and wearable medical (IWM) devices are integral parts of enabling …

Inorganic ferroelectric thin films and their composites for flexible electronic and energy device applications: current progress and perspectives

AR Jayakrishnan, A Kumar, S Druvakumar… - Journal of Materials …, 2023 - pubs.rsc.org
Scientific research is involved in the inception of flexible energy devices, and ferroelectric
(FE) materials are making their mark on the process. In particular, devices based on …

Direct-Ink Writing Processing of High-k Poly(vinylidene fluoride-trifluoroethylene-chlorofluoroethylene) and Its Integration into an All-Printed Capacitive Touch …

N Pereira, RS Pinto, R Gonçalves… - ACS Applied …, 2023 - ACS Publications
Direct-ink writing (DIW) printing technology represents a suitable and efficient additive
manufacturing technique for producing intricate designs and structures directly on the …

Printable inks and deformable electronic array devices

S Veerapandian, W Kim, J Kim, Y Jo, S Jung… - Nanoscale …, 2022 - pubs.rsc.org
Deformable printed electronic array devices are expected to revolutionize next-generation
electronics. However, although remarkable technological advances in printable inks and …

[HTML][HTML] Variable capacity polymer based energy harvesters with integrated macroporous elastomer springs

Q Jiang, V Otáhalová, V Burré, HS Leese, MSP Shaffer… - Nano Energy, 2024 - Elsevier
We introduce a manufacturing concept of variable capacity energy harvesters consisting of
macroporous springs integrated within a conducting silicone rubber and dielectric. Printing …