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Synergistic Integration of Nanogenerators and Solar Cells: Advanced Hybrid Structures and Applications

Title
Synergistic Integration of Nanogenerators and Solar Cells: Advanced Hybrid Structures and Applications
Author(s)
Hajra, SugatoAli, AmanatPanda, SwatiSong, HeewoonRajaitha, Peter MaryDubal, DeepakBorras, AnaIn-Na, PichayaVittayakorn, NaratipVivekananthan, VenkateswaranKim, Hoe JoonDivya, SivasubramaniOh, Tae Hwan
Issued Date
ACCEPT
Citation
Advanced Energy Materials
Type
Article
Author Keywords
hybrid systemsnanogeneratorsself-poweredsolar cells
Keywords
CONCURRENTLY SCAVENGING SOLARELECTROMAGNETIC GENERATORENERGY CELLPOWER UNIT
ISSN
1614-6832
Abstract
The rapid growth of global energy consumption and the increasing demand for sustainable and renewable energy sources have urged vast research into harnessing energy from various sources. Among them, the most promising approaches are nanogenerators (NGs) and solar cells (SCs), which independently offer innovative solutions for energy harvesting. This review paper presents a comprehensive analysis of the integration of NGs and SCs, exploring advanced hybrid structures and their diverse applications. First, an overview of the principles and working mechanisms of NGs and SCs is provided for seamless hybrid integrations. Then, various design strategies are discussed, such as piezoelectric and triboelectric NGs with different types of SCs. Finally, a wide range of applications are explored that benefit from the synergistic integration of NGs and SCs, including self-powered electronics, wearable devices, environmental monitoring, and wireless sensor networks. The potential for these hybrid systems is highlighted to address real-world energy needs and contribute to developing sustainable and self-sufficient technologies. In conclusion, this review provides valuable insights into the state-of-the-art developments in NGs and SCs integration, shedding light on advanced hybrid structures and their diverse applications. © 2024 The Authors. Advanced Energy Materials published by Wiley-VCH GmbH. This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
URI
http://hdl.handle.net/20.500.11750/56560
DOI
10.1002/aenm.202400025
Publisher
Wiley
Related Researcher
  • 김회준 Kim, Hoe Joon
  • Research Interests MEMS/NEMS; Micro/Nano Sensors; Piezoelectric Devices; Nanomaterials; Heat Transfer; Atomic Force Microscope
Files in This Item:
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Appears in Collections:
Department of Robotics and Mechatronics Engineering Nano Materials and Devices Lab 1. Journal Articles

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