Negative potential induced growth of surfactant-free CuO nanostructures on Al-C substrate: A dual in-line sensor for biomarkers of diabetes and oxidative stress
Identifying a non-enzymatic sensor electrocatalyst for the accurate determination of biomolecules is a paramount task. The weird morphology of the nanomaterial may exhibit the remarkable activity to enhance the sensitivity of the electrode, and hence, tuning the shape of the nanomaterials is one of...
Na minha lista:
Principais autores: | N. S. K., Gowthaman, P., Arul, Hong, Ngee Lim, S. Abraham, John |
---|---|
Formato: | Atigo |
Idioma: | English |
Publicado em: |
American Chemical Society
2020
|
Acesso em linha: | http://psasir.upm.edu.my/id/eprint/86886/1/Negative%20potential%20induced%20growth%20of%20surfactant.pdf |
Tags: |
Adicionar Tag
Sem tags, seja o primeiro a adicionar uma tag!
|
Registros relacionados
-
Scavenger-free and self-powered photocathodic sensing system for aqueous hydrogen peroxide monitoring by CuO/ZnO nanostructure
por: Hao, Wu, et al.
Publicado em: (2020) -
Optical nonlinear properties of Ag, Cu and CuO nanoparticles in polymer solutions /
por: Faraji, Nastaran.
Publicado em: (2013) -
Tunable morphology and band gap alteration of CuO-ZnO nanostructures based photocathode for solar photoelectrochemical cells
por: A Albadarin, Nusayba, et al.
Publicado em: (2020) -
Structural and gas-sensing properties of CuO-CuxFe3-xO4 nanostructured thin films.
por: Chapelle, Audrey, et al.
Publicado em: (2011) -
Effects of different types of surfactants on AC breakdown voltage of refined, bleached and deodorized palm oil based CuO nanofluids
por: Mohamad, Nur Aqilah, et al.
Publicado em: (2018)