Transformation technologies for CO2 utilisation: Current status, challenges and future prospects

ADN Kamkeng, M Wang, J Hu, W Du, F Qian - Chemical Engineering …, 2021 - Elsevier
To prevent global warming and climate change caused by CO 2 emissions, the
Intergovernmental Panel on Climate Change (IPCC) recommends lowering CO 2 emissions …

Fundamentals, applications, and future directions of bioelectrocatalysis

H Chen, O Simoska, K Lim, M Grattieri, M Yuan… - Chemical …, 2020 - ACS Publications
Bioelectrocatalysis is an interdisciplinary research field combining biocatalysis and
electrocatalysis via the utilization of materials derived from biological systems as catalysts to …

Electroactive microorganisms in bioelectrochemical systems

BE Logan, R Rossi, A Ragab, PE Saikaly - Nature Reviews …, 2019 - nature.com
A vast array of microorganisms from all three domains of life can produce electrical current
and transfer electrons to the anodes of different types of bioelectrochemical systems. These …

Photosynthetic semiconductor biohybrids for solar-driven biocatalysis

S Cestellos-Blanco, H Zhang, JM Kim, Y Shen… - Nature Catalysis, 2020 - nature.com
Photosynthetic semiconductor biohybrids integrate the best attributes of biological whole-
cell catalysts and semiconducting nanomaterials. Enzymatic machinery enveloped in its …

Interfacing nature's catalytic machinery with synthetic materials for semi-artificial photosynthesis

N Kornienko, JZ Zhang, KK Sakimoto, P Yang… - Nature …, 2018 - nature.com
Semi-artificial photosynthetic systems aim to overcome the limitations of natural and artificial
photosynthesis while providing an opportunity to investigate their respective functionality …

[HTML][HTML] Microbial electrosynthesis: towards sustainable biorefineries for production of green chemicals from CO2 emissions

P Dessì, L Rovira-Alsina, C Sánchez, GK Dinesh… - Biotechnology …, 2021 - Elsevier
Decarbonisation of the economy has become a priority at the global level, and the resulting
legislative pressure is pushing the chemical and energy industries away from fossil fuels …

The progress and outlook of bioelectrocatalysis for the production of chemicals, fuels and materials

H Chen, F Dong, SD Minteer - Nature Catalysis, 2020 - nature.com
Bioelectrocatalysis is a green, sustainable, efficient method to produce value-added
chemicals, clean biofuels and degradable materials. As an alternative approach to modern …

[HTML][HTML] Anion-exchange membranes in electrochemical energy systems

JR Varcoe, P Atanassov, DR Dekel… - Energy & …, 2014 - pubs.rsc.org
This article provides an up-to-date perspective on the use of anion-exchange membranes in
fuel cells, electrolysers, redox flow batteries, reverse electrodialysis cells, and …

The ins and outs of microorganism–electrode electron transfer reactions

A Kumar, LHH Hsu, P Kavanagh, F Barrière… - Nature Reviews …, 2017 - nature.com
Electron transfer between microorganisms and an electrode—even across long distances—
enables the former to live by coupling to an electronic circuit. Such a system integrates …

Microbial electrosynthesis from CO2: Challenges, opportunities and perspectives in the context of circular bioeconomy

B Bian, S Bajracharya, J Xu, D Pant, PE Saikaly - Bioresource technology, 2020 - Elsevier
Recycling CO 2 into organic products through microbial electrosynthesis (MES) is attractive
from the perspective of circular bioeconomy. However, several challenges need to be …