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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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 |
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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 |
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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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