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129th General Meeting of Korean Chemical Society & Exposition Fe-Based Mesoporous Nanostructures for Electrochemical Conversion and Storage of Energy

Submission Date :
2 / 15 / 2022 , 14 : 10 : 29
Abstract Number :
Presenting Type:
Poster Presentation Analytical Chemistry Oral Presentation
Presenting Area :
Analytical Chemistry
Authors :
Lemma Teshome Tufa, Jaebeom Lee*
Chemistry, Chungnam National University, Korea
Assigned Code :
ANAL.P-351 Assigend Code Guideline
Presenting Time :
April 14 (THU) 11:00~13:00
Decarbonization of the global energy system requires a coordinated effort towards disruptive technology of renewable energy conversion and storage (ECS) that can be potential to secure and diversify energy systems by increasing efficiency of conversion and storage of intermittent energy sources. Porous nanostructures have been newly reported as a promising class of most effective materials for (ECS) because of their unique advantages in terms of large surface-to-volume ratios, surface permeability, and void spaces. These offer abundant active sites for electrochemical activities by shortening the pathway of mass/charge transport. Particularly, Fe-based mesoporous nanostructures (mp-FeNSs) have been recently fascinating. Iron is a principal active center in nanocomposites and has high industrial suitability for next-generation technology owing to its environment friendliness, abundance, and low cost. Crucial technical advances related to Fe-based mesoporous nanostructures are discussed in terms of synthesis, structural design strategy, and ECS applications such as water electrocatalysis, Li-ion batteries, and supercapacitors.