Triboelectric nanogenerator based on coastal bio-waste Ulva lactuca from Jeju island for sustainable energy harvesting

In the past, the occurrence of macro alga Ulva lactuca on the coastal areas of Jeju Island, Korea, has resulted in the expansion of devastating green tides, thus affecting coastal sustainability, aesthetic appearances, and tourism activities. Taking consideration of the above scenario, substantial e...

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Main Authors: Muhammad Noman, Rayyan Ali Shaukat, Swapnil R. Patil, Mahesh Y. Chougale, Jungmin Kim, Chandrashekhar S. Patil, Qazi Muhammad Saqib, Hyung Woo Lee, Myung Sook Kim, Jinho Bae
Format: Article
Language:English
Published: Elsevier 2024-03-01
Series:Journal of Science: Advanced Materials and Devices
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2468217923001387
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author Muhammad Noman
Rayyan Ali Shaukat
Swapnil R. Patil
Mahesh Y. Chougale
Jungmin Kim
Chandrashekhar S. Patil
Qazi Muhammad Saqib
Hyung Woo Lee
Myung Sook Kim
Jinho Bae
author_facet Muhammad Noman
Rayyan Ali Shaukat
Swapnil R. Patil
Mahesh Y. Chougale
Jungmin Kim
Chandrashekhar S. Patil
Qazi Muhammad Saqib
Hyung Woo Lee
Myung Sook Kim
Jinho Bae
author_sort Muhammad Noman
collection DOAJ
description In the past, the occurrence of macro alga Ulva lactuca on the coastal areas of Jeju Island, Korea, has resulted in the expansion of devastating green tides, thus affecting coastal sustainability, aesthetic appearances, and tourism activities. Taking consideration of the above scenario, substantial economic costs are required for the environmental protection of the island, and it is highly recommended to employ Ulva lactuca in an alternative useful way. Hence, this paper proposes a new strategy to utilize Ulva lactuca as a tribopositive layer in a triboelectric nanogenerator (TENG). Based on the coastal bio-waste Ulva lactuca, the fabricated TENG device generates a maximum output voltage of 875 V, output current of 52 μA, and power density of 272.72 μW/cm2. Furthermore, the device presents excellent cyclic stability with no degradation in the output voltage even after 10000 consecutive cycles at a frequency of 2 Hz. The proposed TENG is further employed to charge the various commercially available capacitors, lightning LEDs, power stopwatches, and scavenge energy from body motions. It is anticipated that the proposed TENG device will pave a new way towards Ulva lactuca management for sustainable energy harvesting and clean coastlines.
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spelling doaj.art-aa9b3f83deff4198a54b6bd0ed54f6ee2024-02-21T05:29:31ZengElsevierJournal of Science: Advanced Materials and Devices2468-21792024-03-0191100669Triboelectric nanogenerator based on coastal bio-waste Ulva lactuca from Jeju island for sustainable energy harvestingMuhammad Noman0Rayyan Ali Shaukat1Swapnil R. Patil2Mahesh Y. Chougale3Jungmin Kim4Chandrashekhar S. Patil5Qazi Muhammad Saqib6Hyung Woo Lee7Myung Sook Kim8Jinho Bae9Department of Ocean System Engineering, Jeju National University, 102 Jejudaehakro, Jeju, 63243, Republic of KoreaDepartment of Ocean System Engineering, Jeju National University, 102 Jejudaehakro, Jeju, 63243, Republic of KoreaDepartment of Ocean System Engineering, Jeju National University, 102 Jejudaehakro, Jeju, 63243, Republic of KoreaDepartment of Ocean System Engineering, Jeju National University, 102 Jejudaehakro, Jeju, 63243, Republic of KoreaDepartment of Ocean System Engineering, Jeju National University, 102 Jejudaehakro, Jeju, 63243, Republic of KoreaDepartment of Ocean System Engineering, Jeju National University, 102 Jejudaehakro, Jeju, 63243, Republic of KoreaDepartment of Ocean System Engineering, Jeju National University, 102 Jejudaehakro, Jeju, 63243, Republic of KoreaResearch Institute for Basic Sciences, Jeju National University, 102 Jejudaehakro, Jeju, 63243, Republic of KoreaResearch Institute for Basic Sciences, Jeju National University, 102 Jejudaehakro, Jeju, 63243, Republic of KoreaDepartment of Ocean System Engineering, Jeju National University, 102 Jejudaehakro, Jeju, 63243, Republic of Korea; Corresponding author.In the past, the occurrence of macro alga Ulva lactuca on the coastal areas of Jeju Island, Korea, has resulted in the expansion of devastating green tides, thus affecting coastal sustainability, aesthetic appearances, and tourism activities. Taking consideration of the above scenario, substantial economic costs are required for the environmental protection of the island, and it is highly recommended to employ Ulva lactuca in an alternative useful way. Hence, this paper proposes a new strategy to utilize Ulva lactuca as a tribopositive layer in a triboelectric nanogenerator (TENG). Based on the coastal bio-waste Ulva lactuca, the fabricated TENG device generates a maximum output voltage of 875 V, output current of 52 μA, and power density of 272.72 μW/cm2. Furthermore, the device presents excellent cyclic stability with no degradation in the output voltage even after 10000 consecutive cycles at a frequency of 2 Hz. The proposed TENG is further employed to charge the various commercially available capacitors, lightning LEDs, power stopwatches, and scavenge energy from body motions. It is anticipated that the proposed TENG device will pave a new way towards Ulva lactuca management for sustainable energy harvesting and clean coastlines.http://www.sciencedirect.com/science/article/pii/S2468217923001387Ulva lactucaTriboelectric nanogeneratorCoastal wasteSustainabilityEnergy harvesting
spellingShingle Muhammad Noman
Rayyan Ali Shaukat
Swapnil R. Patil
Mahesh Y. Chougale
Jungmin Kim
Chandrashekhar S. Patil
Qazi Muhammad Saqib
Hyung Woo Lee
Myung Sook Kim
Jinho Bae
Triboelectric nanogenerator based on coastal bio-waste Ulva lactuca from Jeju island for sustainable energy harvesting
Journal of Science: Advanced Materials and Devices
Ulva lactuca
Triboelectric nanogenerator
Coastal waste
Sustainability
Energy harvesting
title Triboelectric nanogenerator based on coastal bio-waste Ulva lactuca from Jeju island for sustainable energy harvesting
title_full Triboelectric nanogenerator based on coastal bio-waste Ulva lactuca from Jeju island for sustainable energy harvesting
title_fullStr Triboelectric nanogenerator based on coastal bio-waste Ulva lactuca from Jeju island for sustainable energy harvesting
title_full_unstemmed Triboelectric nanogenerator based on coastal bio-waste Ulva lactuca from Jeju island for sustainable energy harvesting
title_short Triboelectric nanogenerator based on coastal bio-waste Ulva lactuca from Jeju island for sustainable energy harvesting
title_sort triboelectric nanogenerator based on coastal bio waste ulva lactuca from jeju island for sustainable energy harvesting
topic Ulva lactuca
Triboelectric nanogenerator
Coastal waste
Sustainability
Energy harvesting
url http://www.sciencedirect.com/science/article/pii/S2468217923001387
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