Detail publikace

Al2O3/Covalent Organic Framework on 3D-Printed Nanocarbon Electrodes for Enhanced Biomarker Detection

WANG, L. NG, S. JYOTI, J. PUMERA, M.

Originální název

Al2O3/Covalent Organic Framework on 3D-Printed Nanocarbon Electrodes for Enhanced Biomarker Detection

Typ

článek v časopise ve Web of Science, Jimp

Jazyk

angličtina

Originální abstrakt

With the advantages of on-demand customization, 3D-printing techniques have elevated the horizon of various fields. The as-printed 3D structures often require postmodification to enhance their properties. Here, we describe the use of molecularly precise covalent framework modification in combination with atomic layer deposition (ALD) to construct advanced sensors. First, a high-stability electrode was obtained by covalent modification of porous nanomaterial [covalent organic frameworks, (COF)] on the activated 3D electrode for the first time. Subsequently, the Al2O3 nanomaterial was coated on the COF-based 3D electrode by the ALD technique. The constructed sensor termed Al2O3/COF/3DE was chosen for the determination of important biomarkers including ascorbic acid, catechol, and dopamine, which showed a high sensitivity for detecting these biomarkers. This work opens avenues for the covalent modification of porous materials on 3D-printed electrodes and deposition of functional material using the ALD technique on the modified 3D electrode surface.

Klíčová slova

covalent organic frameworks; atomic layer deposition; covalent cross-linking; 3D printing; electrochemistry

Autoři

WANG, L.; NG, S.; JYOTI, J.; PUMERA, M.

Vydáno

22. 7. 2022

Nakladatel

AMER CHEMICAL SOC

Místo

WASHINGTON

ISSN

2574-0970

Periodikum

ACS Applied Nano Materials

Ročník

5

Číslo

7

Stát

Spojené státy americké

Strany od

9719

Strany do

9727

Strany počet

9

URL

BibTex

@article{BUT178685,
  author="Lujun {Wang} and Siow Woon {Ng} and Jyoti {Jyoti} and Martin {Pumera}",
  title="Al2O3/Covalent Organic Framework on 3D-Printed Nanocarbon Electrodes for Enhanced Biomarker Detection",
  journal="ACS Applied Nano Materials",
  year="2022",
  volume="5",
  number="7",
  pages="9719--9727",
  doi="10.1021/acsanm.2c01937",
  issn="2574-0970",
  url="https://pubs.acs.org/doi/10.1021/acsanm.2c01937"
}