NSFC [21206140, 21106117, 21036004, 20976146]; NSF [2010J05032]Anisotropic Au nanoplates are particularly important owing to their unusual properties. Herein, we describe a plant-mediated bioreduction method to increase the yield of Au nanoplates and shorten the reaction time through a kinetically manipulated procedure. More specifically, the reduction rate was controlled by modulating experimental factors such as the addition mode and rate of the feed solutions, the temperature, and the pH based on a syringe-pumps apparatus. The dimensions of the obtained Au nanoplates were measured using TEM and AFM. The single-crystalline structure was demonstrated by HRTEM, SAED, and XRD. The results of XPS, FTIR, and TG analyses indicated strong affini...
A novel route was proposed to synthesize gold nanoplates using a commercial gold plating solution as...
Gold nanorods have been pursued due to their unique optoelectronic properties, which have led to pot...
Branched Au nanoparticles have attracted intense interest owing to their remarkable properties and a...
A novel and simple chemical method was developed to fastly synthesize Au nanoplates with size of mic...
The ability to synthesize plasmonic nanomaterials with well-defined structures and tailorable size i...
We report the surfactant-free vapor-phase synthesis of atomically-flat and ultraclean gold nanoplate...
[[abstract]]The synthesis of gold nanoplates was carried out in an aqueous solution by thermal reduc...
Shape-controlled synthesis of Au nanoparticles has received considerable attention, mainly due to th...
Gold nanoplates are promising for optical and electronic applications; but their synthesis is compl...
The demand for safer design and synthesis of gold nanoparticles (AuNPs) is on the increase with the ...
The synthesis of surfactant-free Au nanoplates is desirable for the development of biocompatible the...
Thin Au nanoplates show intriguing localized surface plasmon resonance (LSPR) properties with potent...
A one-step wet chemical approach or seedless growth process has several advantages compared to the t...
A continuous, microfluidic-based, seed-mediated synthesis of high-purity gold nanoplates with differ...
Two-dimensional (2D) gold nanoplates (AuNPLs) have shown potential in catalysis, photonics, electron...
A novel route was proposed to synthesize gold nanoplates using a commercial gold plating solution as...
Gold nanorods have been pursued due to their unique optoelectronic properties, which have led to pot...
Branched Au nanoparticles have attracted intense interest owing to their remarkable properties and a...
A novel and simple chemical method was developed to fastly synthesize Au nanoplates with size of mic...
The ability to synthesize plasmonic nanomaterials with well-defined structures and tailorable size i...
We report the surfactant-free vapor-phase synthesis of atomically-flat and ultraclean gold nanoplate...
[[abstract]]The synthesis of gold nanoplates was carried out in an aqueous solution by thermal reduc...
Shape-controlled synthesis of Au nanoparticles has received considerable attention, mainly due to th...
Gold nanoplates are promising for optical and electronic applications; but their synthesis is compl...
The demand for safer design and synthesis of gold nanoparticles (AuNPs) is on the increase with the ...
The synthesis of surfactant-free Au nanoplates is desirable for the development of biocompatible the...
Thin Au nanoplates show intriguing localized surface plasmon resonance (LSPR) properties with potent...
A one-step wet chemical approach or seedless growth process has several advantages compared to the t...
A continuous, microfluidic-based, seed-mediated synthesis of high-purity gold nanoplates with differ...
Two-dimensional (2D) gold nanoplates (AuNPLs) have shown potential in catalysis, photonics, electron...
A novel route was proposed to synthesize gold nanoplates using a commercial gold plating solution as...
Gold nanorods have been pursued due to their unique optoelectronic properties, which have led to pot...
Branched Au nanoparticles have attracted intense interest owing to their remarkable properties and a...