Three-dimensional ZnO hierarchical nanostructures: Solution phase synthesis and applications
X Wang, M Ahmad, H Sun - Materials, 2017 - mdpi.com
Zinc oxide (ZnO) nanostructures have been studied extensively in the past 20 years due to
their novel electronic, photonic, mechanical and electrochemical properties. Recently, more …
their novel electronic, photonic, mechanical and electrochemical properties. Recently, more …
Enlightening the bimetallic effect of Au@ Pd nanoparticles on Ni oxide nanostructures with enhanced catalytic activity
Bimetallic decoration of semiconductor electrodes typically improves catalytic and sensing
performances because of a well-claimed synergistic effect. A microscopic and quantitative …
performances because of a well-claimed synergistic effect. A microscopic and quantitative …
Free carrier enhanced depletion in ZnO nanorods decorated with bimetallic AuPt nanoclusters
The decoration of semiconductor nanostructures with small metallic clusters usually leads to
an improvement of their properties in sensing or catalysis. Bimetallic cluster decoration …
an improvement of their properties in sensing or catalysis. Bimetallic cluster decoration …
A novel gas-phase mono and bimetallic clusters decorated Zno nanorods electrochemical sensor for 4-aminophenol detection
aminophenol (pAP) is a typical secondary product obtained in pharmaceuticals preparation
that needs to be accurately measured to avoid dangerous collateral effects in drugs …
that needs to be accurately measured to avoid dangerous collateral effects in drugs …
Optimized Chemical Bath Deposition for Low Cost, Scalable, and Environmentally Sustainable Synthesis of Star-Like ZnO Nanostructures
GM Di Mari, V La Matta, V Strano, R Reitano… - ACS …, 2024 - ACS Publications
This paper highlights an affordable and straightforward method called chemical bath
deposition (CBD) for generating different morphologies of ZnO-based nanostructures. In …
deposition (CBD) for generating different morphologies of ZnO-based nanostructures. In …
Room temperature single electron transistor based on a size-selected aluminium cluster
Single electron transistors (SETs) are powerful devices to study the properties of nanoscale
objects. However, the capabilities of placing a nano-object between electrical contacts …
objects. However, the capabilities of placing a nano-object between electrical contacts …
Electrochemical sensors based on Au-ZnS hybrid nanorods with Au-mediated efficient electron relay
Y Kim, K Giribabu, JG Kim, JB Lee… - ACS Sustainable …, 2018 - ACS Publications
Development of a novel and stable electrochemical sensor electrode for the sensitive and
reliable determination of p-nitrophenol (p-NP) is of great importance to environment. In the …
reliable determination of p-nitrophenol (p-NP) is of great importance to environment. In the …
Enhanced Methanol Electro‐Oxidation Activity of Nanoclustered Gold
Size‐selected 3 nm gas‐phase Au clusters dispersed by cluster beam deposition (CBD) on
a conducting fluorine‐doped tin oxide template show strong enhancement in mass activity …
a conducting fluorine‐doped tin oxide template show strong enhancement in mass activity …
Synthesis of gold-coated branched ZnO nanorods for gas sensor fabrication
A Thamer, A Faisal, A Abed, W Khalef - Journal of Nanoparticle Research, 2020 - Springer
In this work, atypical zinc oxide nanorods (ZnO NRs) on quartz substrates were successfully
synthesized using simple, low-cost, and environmentally friendly hydrothermal method. The …
synthesized using simple, low-cost, and environmentally friendly hydrothermal method. The …
Dual functionality of surface plasmon resonance and barrier layer on the photosensing and optical nonlinearity of ZnO nanorod arrays
A Farokhipour, A Rahmati, M Khanzadeh - Physical Chemistry …, 2022 - pubs.rsc.org
The dual functionality of plasmonic light harvesting and barrier spacing between Au
nanoparticles (NPs) and ZnO nanorod arrays (NRsA) are spotlighted to investigate their …
nanoparticles (NPs) and ZnO nanorod arrays (NRsA) are spotlighted to investigate their …