Detail publikace

Functionalized 2D Germanene and Silicene Enzymatic System

CHIA, H. ŠTURALA, J. WEBSTER, R. PUMERA, M.

Originální název

Functionalized 2D Germanene and Silicene Enzymatic System

Typ

článek v časopise ve Web of Science, Jimp

Jazyk

angličtina

Originální abstrakt

In recent years, 2D Group 14 graphane analogs, such as germanane, methyl germanane, and siloxene, have taken materials scientists by storm due to their facile synthesis procedures and the numerous attractive properties proffered. Due to their fascinating properties, these emerging Group 14 graphane analogs are studied for varied applications including supercapacitors, photocatalysts, and sensors. Although several groups have reported the viability of using Group 14 graphane analogs for the construction of biosensors, they are mainly based upon computational studies, and few experimental studies are conducted. This paper aims to experimentally investigate the feasibility of using germanane and siloxene-based materials as 2D functional support for enzymatic systems. The heterogeneous electron transfer kinetics and the glucose sensing response of the as-synthesized germanane, methyl germanane, and siloxene are examined, and the most outstanding material, germanane, is employed for further construction of electrochemical glucose biosensor. The fabricated biosensing platform delivers excellent analytical performances, displaying good linearity over various magnitudes of glucose concentrations, and possesses a low detection limit. The findings reported herein showcase the potential of applying these 2D Group 14 graphane analogs for future developments of highly selective and sensitive biosensors for biomedical, environmental monitoring, and food sampling applications.

Klíčová slova

electrochemistry; germanane; germanene; glucose biosensors; methyl germanane; siloxene

Autoři

CHIA, H.; ŠTURALA, J.; WEBSTER, R.; PUMERA, M.

Vydáno

1. 4. 2021

Nakladatel

WILEY-V C H VERLAG GMBH

Místo

WEINHEIM

ISSN

1616-301X

Periodikum

ADVANCED FUNCTIONAL MATERIALS

Ročník

31

Číslo

16

Stát

Spolková republika Německo

Strany od

2011125-1

Strany do

2011125-9

Strany počet

9

URL