Dual-edged sword of ion migration in perovskite materials for simultaneous energy harvesting and storage application

Summary: Portable electronic devices and Internet of Things (IoT) require an uninterrupted power supply for their optimum performance and are key ingredients of the futuristic smart buildings - cities. The off-grid photovoltaic cells and photo-rechargeable energy storage devices meet the requirement...

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Main Authors: Ramesh Kumar, Monojit Bag, Sagar M. Jain
Format: Article
Language:English
Published: Elsevier 2023-11-01
Series:iScience
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2589004223022496
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author Ramesh Kumar
Monojit Bag
Sagar M. Jain
author_facet Ramesh Kumar
Monojit Bag
Sagar M. Jain
author_sort Ramesh Kumar
collection DOAJ
description Summary: Portable electronic devices and Internet of Things (IoT) require an uninterrupted power supply for their optimum performance and are key ingredients of the futuristic smart buildings - cities. The off-grid photovoltaic cells and photo-rechargeable energy storage devices meet the requirements for continuous data processing and transmission. In addition, these off-grid devices can solve the energy mismanagement problem famously called as “duck curve”. The conventional approach is the external integration of a photovoltaic cell and an energy storage device through a complex multi-layered structure. However, this approach causes ohmic transport losses and requires additional complex device packaging leading to increased weight and high cost. Toward this narrative, in this viewpoint, we shed light on application of disruptive organic-inorganic hybrid halide perovskite bifunctional materials employed as smart photo-rechargeable energy devices. We also present hybrid halide lead-free perovskite materials for off-grid energy storage systems for indoor lighting applications.
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spelling doaj.art-c317d650b9b949db92241b2e438c4bf22023-10-22T04:49:43ZengElsevieriScience2589-00422023-11-012611108172Dual-edged sword of ion migration in perovskite materials for simultaneous energy harvesting and storage applicationRamesh Kumar0Monojit Bag1Sagar M. Jain2Center for Renewable and Low Carbon Energy, School of Water, Energy and Environment (SWEE), Cranfield University, Cranfield MK430AL, UK; Department of Chemistry, Ångström Laboratory, Uppsala University, Box 523, 75120 Uppsala, SE, Sweden; Advanced Research in Electrochemical Impedance Spectroscopy (AREIS) Laboratory, Indian Institute of Technology Roorkee, Roorkee 247667, IndiaAdvanced Research in Electrochemical Impedance Spectroscopy (AREIS) Laboratory, Indian Institute of Technology Roorkee, Roorkee 247667, IndiaCenter for Renewable and Low Carbon Energy, School of Water, Energy and Environment (SWEE), Cranfield University, Cranfield MK430AL, UK; Corresponding authorSummary: Portable electronic devices and Internet of Things (IoT) require an uninterrupted power supply for their optimum performance and are key ingredients of the futuristic smart buildings - cities. The off-grid photovoltaic cells and photo-rechargeable energy storage devices meet the requirements for continuous data processing and transmission. In addition, these off-grid devices can solve the energy mismanagement problem famously called as “duck curve”. The conventional approach is the external integration of a photovoltaic cell and an energy storage device through a complex multi-layered structure. However, this approach causes ohmic transport losses and requires additional complex device packaging leading to increased weight and high cost. Toward this narrative, in this viewpoint, we shed light on application of disruptive organic-inorganic hybrid halide perovskite bifunctional materials employed as smart photo-rechargeable energy devices. We also present hybrid halide lead-free perovskite materials for off-grid energy storage systems for indoor lighting applications.http://www.sciencedirect.com/science/article/pii/S2589004223022496Applied sciencesEnergy applicationMaterials science
spellingShingle Ramesh Kumar
Monojit Bag
Sagar M. Jain
Dual-edged sword of ion migration in perovskite materials for simultaneous energy harvesting and storage application
iScience
Applied sciences
Energy application
Materials science
title Dual-edged sword of ion migration in perovskite materials for simultaneous energy harvesting and storage application
title_full Dual-edged sword of ion migration in perovskite materials for simultaneous energy harvesting and storage application
title_fullStr Dual-edged sword of ion migration in perovskite materials for simultaneous energy harvesting and storage application
title_full_unstemmed Dual-edged sword of ion migration in perovskite materials for simultaneous energy harvesting and storage application
title_short Dual-edged sword of ion migration in perovskite materials for simultaneous energy harvesting and storage application
title_sort dual edged sword of ion migration in perovskite materials for simultaneous energy harvesting and storage application
topic Applied sciences
Energy application
Materials science
url http://www.sciencedirect.com/science/article/pii/S2589004223022496
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AT monojitbag dualedgedswordofionmigrationinperovskitematerialsforsimultaneousenergyharvestingandstorageapplication
AT sagarmjain dualedgedswordofionmigrationinperovskitematerialsforsimultaneousenergyharvestingandstorageapplication