A single step wet chemical approach to bifunctional ultrathin (ZnO) 62 (Fe 2 O 3 ) 38 dendritic nanosheets.
Saba LatifBilal AkramChaudry Sajed SarajBilal Ahmad KhanMudussar AliJaveed AkhtarPublished in: RSC advances (2023)
At the ultrathin scale, nanomaterials exhibit interesting chemical and physical properties, like flexibility, and polymer-like rheology. However, to limit the dimensions of composite nanomaterials at the ultrathin level is still a challenging task. Herein, by adopting a new low temperature single step and single pot wet chemical approach, we have successfully fabricated two dimensional (2D) mixed oxide ZnO-Fe 2 O 3 dendritic nanosheets (FZDNSs). Various control experimental outcomes demonstrate that precursor salts of both the metals are crucial for the formation of stable 2D FZDNSs. The obtained FZDNSs not only exhibit the best photoreduction performance but also much enhanced electrocatalytic performance. This work will provide a promising avenue for the synthesis of cost effective transition metal mixed oxide based 2D nanosheets having wide ranging applications.
Keyphrases
- metal organic framework
- reduced graphene oxide
- transition metal
- quantum dots
- visible light
- gold nanoparticles
- high efficiency
- room temperature
- mental health
- highly efficient
- physical activity
- human health
- risk assessment
- adipose tissue
- metabolic syndrome
- health risk
- skeletal muscle
- health risk assessment
- heavy metals