A new insight towards eggshell membrane as high energy conversion efficient bio-piezoelectric energy harvester

SK Karan, S Maiti, S Paria, A Maitra, SK Si, JK Kim… - Materials today …, 2018 - Elsevier
Bio-inspired piezoelectric materials have been considered as excellent energy harvesting
source for their non-toxic and biocompatibility nature which have ability to generate and …

Deep learning enabled perceptive wearable sensor: an interactive gadget for tracking movement disorder

A Babu, S Ranpariya, DK Sinha… - Advanced Materials …, 2023 - Wiley Online Library
Biosignals of diverse body posture contain a key information about the physiological,
kinesiological, and anatomical status of human body that can facilitate in early assessing the …

Bio-assembled, piezoelectric prawn shell made self-powered wearable sensor for non-invasive physiological signal monitoring

SK Ghosh, D Mandal - Applied Physics Letters, 2017 - pubs.aip.org
A human interactive self-powered wearable sensor is designed using waste by-product
prawn shells. The structural origin of intrinsic piezoelectric characteristics of bio-assembled …

Sustainable energy generation from piezoelectric biomaterial for noninvasive physiological signal monitoring

SK Ghosh, D Mandal - ACS Sustainable Chemistry & Engineering, 2017 - ACS Publications
Sustainable development of self-powered wearable electronics relies on bioinspired
piezoelectric materials which could transduce minute deformation of human skin. In this …

Wearable millimeter-wave device for contactless measurement of arterial pulses

JE Johnson, O Shay, C Kim… - IEEE transactions on …, 2019 - ieeexplore.ieee.org
Wearable monitors for measuring vital signs such as blood pressure will greatly impact the
medical field. This work presents a millimeter-wave, radar-based system for performing …

Solution-synthesized chiral piezoelectric selenium nanowires for wearable self-powered human-integrated monitoring

M Wu, Y Wang, S Gao, R Wang, C Ma, Z Tang, N Bao… - Nano energy, 2019 - Elsevier
Smart sensing devices with high stretchability and self-powered characteristics are essential
in future generation wearable human-integrated applications. Here we report for the first …

Materials, devices, and applications for wearable and implantable electronics

WB Han, GJ Ko, TM Jang… - ACS Applied Electronic …, 2021 - ACS Publications
Recent advances in the engineering or strategy of materials and device design have
established ultrathin, soft, lightweight, and skin-conformable characteristics in …

Recyclable nonfunctionalized paper-based ultralow-cost wearable health monitoring system

JM Nassar, K Mishra, K Lau, AA Aguirre-Pablo… - 2017 - repository.kaust.edu.sa
A wearable health monitor using low-cost and recyclable paper continuously supervises and
assesses body vital conditions simultaneously and in real time, such as blood pressure …

Pervasive blood pressure monitoring using Photoplethysmogram (PPG) sensor

F Riaz, MA Azad, J Arshad, M Imran, A Hassan… - Future Generation …, 2019 - Elsevier
Preventive healthcare requires continuous monitoring of the blood pressure (BP) of patients,
which is not feasible using conventional methods. Photoplethysmogram (PPG) signals can …

ZnO nanoparticle confined stress amplified all-fiber piezoelectric nanogenerator for self-powered healthcare monitoring

B Mahanty, SK Ghosh, S Jana, Z Mallick… - Sustainable Energy & …, 2021 - pubs.rsc.org
In this work, an all-fiber piezoelectric nanogenerator (A-PNG) is designed by using ZnO
nanoparticles (NPs) reinforced poly (vinylidene fluoride)(PVDF) electrospun nanofibers as …