Electrochemical glucose sensors in diabetes management: an updated review (2010–2020)

H Teymourian, A Barfidokht, J Wang - Chemical Society Reviews, 2020 - pubs.rsc.org
While over half a century has passed since the introduction of enzyme glucose biosensors
by Clark and Lyons, this important field has continued to be the focus of immense research …

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 …

Tackling the challenges of enzymatic (bio) fuel cells

X **ao, H **a, 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 …

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 …

Enzyme based amperometric biosensors

P Bollella, L Gorton - Current opinion in Electrochemistry, 2018 - Elsevier
Highlights•The three major electron transfer routes are reviewed: 1st, 2nd (mediated
electron transfer) and 3rd generation biosensors (direct electron transfer).•Enzymatic …

Review of glucose oxidases and glucose dehydrogenases: a bird's eye view of glucose sensing enzymes

S Ferri, K Kojima, K Sode - Journal of diabetes science and …, 2011 - journals.sagepub.com
The evolution from first-generation through third-generation glucose sensors has witnessed
the appearance of a number of very diverse oxidoreductases, which vary tremendously in …

Enzymatic fuel cells: Recent progress

D Leech, P Kavanagh, W Schuhmann - Electrochimica Acta, 2012 - Elsevier
There is an increasing interest in replacing non-selective metal catalysts, currently used in
low temperature fuel cells, with enzymes as catalysts. Specific oxidation of fuel and oxidant …

There is no evidence to support literature claims of direct electron transfer (DET) for native glucose oxidase (GOx) at carbon nanotubes or graphene

PN Bartlett, FA Al-Lolage - Journal of Electroanalytical Chemistry, 2018 - Elsevier
It is widely claimed that native GOx undergoes direct electron transfer (DET) at
nanostructured electrodes. In this paper we argue that the vast majority, if not all, of these …

Enzyme-based biosensors: Tackling electron transfer issues

P Bollella, E Katz - Sensors, 2020 - mdpi.com
This review summarizes the fundamentals of the phenomenon of electron transfer (ET)
reactions occurring in redox enzymes that were widely employed for the development of …

[HTML][HTML] Direct electron transfer based enzymatic fuel cells

M Falk, Z Blum, S Shleev - Electrochimica Acta, 2012 - Elsevier
In this mini-review we briefly describe some historical developments made in the field of
enzymatic fuel cells (FCs), discussing important design considerations taken when …