RED BEAN (PHASEOLUS VULGARIS L.) POD DERIVED CARBON DECORATED WITH FECO AS A BIFUNCTIONAL ELECTROCATALYST IN ZN-AIR BATTERY

As the prime candidate of energy storage technologies, Zn-air battery has gained interest owing to its high theoretical energy density and utilization of abundant resources. Due to the sluggish kinetics reaction in the cathode of the Zn-air battery, a catalyst is required to boost the oxygen redu...

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Main Author: Adib Abdillah Mahbub, Muhammad
Format: Theses
Language:Indonesia
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Online Access:https://digilib.itb.ac.id/gdl/view/57745
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:57745
spelling id-itb.:577452021-08-26T09:56:55ZRED BEAN (PHASEOLUS VULGARIS L.) POD DERIVED CARBON DECORATED WITH FECO AS A BIFUNCTIONAL ELECTROCATALYST IN ZN-AIR BATTERY Adib Abdillah Mahbub, Muhammad Teknik (Rekayasa, enjinering dan kegiatan berkaitan) Indonesia Theses Biomass derived carbon, Zn-air battery, FeCo, electrocatalyst INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/57745 As the prime candidate of energy storage technologies, Zn-air battery has gained interest owing to its high theoretical energy density and utilization of abundant resources. Due to the sluggish kinetics reaction in the cathode of the Zn-air battery, a catalyst is required to boost the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER). The stateof- the-art ORR and OER catalysts (i.e., platinum and iridium), are undesirable due to their scarcity, high-cost, and low stability. Considering this, the efficient bifunctional electrocatalyst with low-cost and easy production is necessary for pushing the research roadmap towards green and sustainable technologies. Biomass-derived carbon-based catalyst decorated with transition metal, and heteroatom doping is the alternative catalyst for the enhanced Zn-air battery performances. In this work, red bean pod waste as a carbon source decorated with FeCo and nitrogen doping is synthesized via simple pyrolysis. The carbon-based catalyst exhibits a high surface area of 625.5 m2 g-1, with an onset potential of 0.89 V for ORR activity, and an overpotential of 470 mV for OER activity. Introducing FeCo and nitrogen positively affect the bifunctional catalyst performance with an onset potential of 0.93 V and an overpotential of 360 mV. FeCo/N-C-Red Bean exhibits a peak power density of 116.2 mW cm- 2 and is stable for 70 hours and 210 cycles in practical Zn-air battery application. This work gives an insight into the utilization of agriculture wastes for value-added material and its application for Zn-air batteries. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
topic Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
spellingShingle Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
Adib Abdillah Mahbub, Muhammad
RED BEAN (PHASEOLUS VULGARIS L.) POD DERIVED CARBON DECORATED WITH FECO AS A BIFUNCTIONAL ELECTROCATALYST IN ZN-AIR BATTERY
description As the prime candidate of energy storage technologies, Zn-air battery has gained interest owing to its high theoretical energy density and utilization of abundant resources. Due to the sluggish kinetics reaction in the cathode of the Zn-air battery, a catalyst is required to boost the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER). The stateof- the-art ORR and OER catalysts (i.e., platinum and iridium), are undesirable due to their scarcity, high-cost, and low stability. Considering this, the efficient bifunctional electrocatalyst with low-cost and easy production is necessary for pushing the research roadmap towards green and sustainable technologies. Biomass-derived carbon-based catalyst decorated with transition metal, and heteroatom doping is the alternative catalyst for the enhanced Zn-air battery performances. In this work, red bean pod waste as a carbon source decorated with FeCo and nitrogen doping is synthesized via simple pyrolysis. The carbon-based catalyst exhibits a high surface area of 625.5 m2 g-1, with an onset potential of 0.89 V for ORR activity, and an overpotential of 470 mV for OER activity. Introducing FeCo and nitrogen positively affect the bifunctional catalyst performance with an onset potential of 0.93 V and an overpotential of 360 mV. FeCo/N-C-Red Bean exhibits a peak power density of 116.2 mW cm- 2 and is stable for 70 hours and 210 cycles in practical Zn-air battery application. This work gives an insight into the utilization of agriculture wastes for value-added material and its application for Zn-air batteries.
format Theses
author Adib Abdillah Mahbub, Muhammad
author_facet Adib Abdillah Mahbub, Muhammad
author_sort Adib Abdillah Mahbub, Muhammad
title RED BEAN (PHASEOLUS VULGARIS L.) POD DERIVED CARBON DECORATED WITH FECO AS A BIFUNCTIONAL ELECTROCATALYST IN ZN-AIR BATTERY
title_short RED BEAN (PHASEOLUS VULGARIS L.) POD DERIVED CARBON DECORATED WITH FECO AS A BIFUNCTIONAL ELECTROCATALYST IN ZN-AIR BATTERY
title_full RED BEAN (PHASEOLUS VULGARIS L.) POD DERIVED CARBON DECORATED WITH FECO AS A BIFUNCTIONAL ELECTROCATALYST IN ZN-AIR BATTERY
title_fullStr RED BEAN (PHASEOLUS VULGARIS L.) POD DERIVED CARBON DECORATED WITH FECO AS A BIFUNCTIONAL ELECTROCATALYST IN ZN-AIR BATTERY
title_full_unstemmed RED BEAN (PHASEOLUS VULGARIS L.) POD DERIVED CARBON DECORATED WITH FECO AS A BIFUNCTIONAL ELECTROCATALYST IN ZN-AIR BATTERY
title_sort red bean (phaseolus vulgaris l.) pod derived carbon decorated with feco as a bifunctional electrocatalyst in zn-air battery
url https://digilib.itb.ac.id/gdl/view/57745
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