Tackling the challenges of enzymatic (bio) fuel cells

X Xiao, H Xia, R Wu, L Bai, L Yan, E Magner… - Chemical …, 2019 - ACS Publications
The ever-increasing demands for clean and sustainable energy sources combined with
rapid advances in biointegrated portable or implantable electronic devices have stimulated …

Energy autonomous sweat‐based wearable systems

L Manjakkal, L Yin, A Nathan, J Wang… - Advanced …, 2021 - Wiley Online Library
The continuous operation of wearable electronics demands reliable sources of energy,
currently met through Li‐ion batteries and various energy harvesters. These solutions are …

A self-sustainable wearable multi-modular E-textile bioenergy microgrid system

L Yin, KN Kim, J Lv, F Tehrani, M Lin, Z Lin… - Nature …, 2021 - nature.com
Despite the fast development of various energy harvesting and storage devices, their
judicious integration into efficient, autonomous, and sustainable wearable systems has not …

O2 Reduction in Enzymatic Biofuel Cells

N Mano, A de Poulpiquet - Chemical reviews, 2017 - ACS Publications
Catalytic four-electron reduction of O2 to water is one of the most extensively studied
electrochemical reactions due to O2 exceptional availability and high O2/H2O redox …

Stretchable and flexible buckypaper‐based lactate biofuel cell for wearable electronics

X Chen, L Yin, J Lv, AJ Gross, M Le… - Advanced Functional …, 2019 - Wiley Online Library
This work demonstrates a stretchable and flexible lactate/O2 biofuel cell (BFC) using
buckypaper (BP) composed of multi‐walled carbon nanotubes as the electrode material …

Carbon based-nanomaterials used in biofuel cells–A review

S ul Haque, A Nasar, N Duteanu, S Pandey - Fuel, 2023 - Elsevier
In the past several years, biological fuel cells (BFCs) have become an explorable
technology that attained the status of current research activities amongst researchers …

Recent advances on enzymatic glucose/oxygen and hydrogen/oxygen biofuel cells: Achievements and limitations

S Cosnier, AJ Gross, A Le Goff, M Holzinger - Journal of Power Sources, 2016 - Elsevier
The possibility of producing electrical power from chemical energy with biological catalysts
has induced the development of biofuel cells as viable energy sources for powering portable …

Direct enzymatic bioelectrocatalysis: differentiating between myth and reality

RD Milton, SD Minteer - Journal of the Royal Society …, 2017 - royalsocietypublishing.org
Enzymatic bioelectrocatalysis is being increasingly exploited to better understand
oxidoreductase enzymes, to develop minimalistic yet specific biosensor platforms, and to …

Buckypaper bioelectrodes: Emerging materials for implantable and wearable biofuel cells

AJ Gross, M Holzinger, S Cosnier - Energy & Environmental Science, 2018 - pubs.rsc.org
Carbon nanotubes (CNTs) have been widely exploited for the development of enzymatic
biofuel cells with sufficient power densities in the μW to mW range for operating low-power …

Functionalization of carbon nanotubes by combination of controlled radical polymerization and “grafting to” method

Z Abousalman-Rezvani, P Eskandari… - Advances in colloid and …, 2020 - Elsevier
This paper reviews the recent advances in non-covalent and covalent tethering of small
molecules and polymer chains onto carbon nanotube (CNT) and its derivatives. The …