Lacking of quantitative experimental data and/or kinetic models that could mathematically depict the redox chemistry and the crystallization issue, bottom-to-up formation kinetics of gold nanoparticles (GNPs) remains a challenge. We measured the dynamic regime of GNPs synthesized by l-ascorbic acid (representing a chemical approach) and/or foliar aqueous extract (a biogenic approach) via in situ spectroscopic characterization and established a redox-crystallization model which allows quantitative and separate parameterization of the nucleation and growth processes. The main results were simplified as the following aspects: (I) an efficient approach, i.e., the dynamic in situ spectroscopic characterization assisted with the redox-crystalliza...
Gold nanoparticles (Au-NPs) are among the most intensely studied nanoscale materials. [1-2] The mole...
Gold nanorods (GNRs) are attractive and important nanomaterials that show enormous promise for a wid...
The photoreduction process of [AuCl<sub>4</sub>]<sup>−</sup> precursors in poly(<i>N</i>-vinyl-2-py...
Nanoparticle growth in solution is a rather complicated process governed by many thermodynamic and k...
Although chemically synthesized gold nanoparticles (AuNPs) from gold salt (HAuCl<sub>4</sub>) are am...
The chemical kinetics of the silver-mediated growth of gold nanorods prepared by the reduction of go...
The chemical kinetics of the silver-mediated growth of gold nanorods prepared by the reduction of go...
Nanoparticle growth in solution is a rather complicated process governed by many thermodynamic and k...
Gold nanoparticles have attracted universal interest for their potential applications in optics, ele...
Understanding the formation process and kinetics is of vital importance for preparing monodisperse c...
In this work, we have successfully developed a new and consistent model to describe the growth of go...
Nano-sized gold particles are generated by exploiting the laser ablation synthesis in solution techn...
In this work, we have successfully developed a new and consistent model to describe the growth of go...
A systematic study of the effect of ascorbic acid concentration on the growth kinetics of gold nanor...
Despite the increasing interest in the applications of functional nanoparticles, a comprehensive und...
Gold nanoparticles (Au-NPs) are among the most intensely studied nanoscale materials. [1-2] The mole...
Gold nanorods (GNRs) are attractive and important nanomaterials that show enormous promise for a wid...
The photoreduction process of [AuCl<sub>4</sub>]<sup>−</sup> precursors in poly(<i>N</i>-vinyl-2-py...
Nanoparticle growth in solution is a rather complicated process governed by many thermodynamic and k...
Although chemically synthesized gold nanoparticles (AuNPs) from gold salt (HAuCl<sub>4</sub>) are am...
The chemical kinetics of the silver-mediated growth of gold nanorods prepared by the reduction of go...
The chemical kinetics of the silver-mediated growth of gold nanorods prepared by the reduction of go...
Nanoparticle growth in solution is a rather complicated process governed by many thermodynamic and k...
Gold nanoparticles have attracted universal interest for their potential applications in optics, ele...
Understanding the formation process and kinetics is of vital importance for preparing monodisperse c...
In this work, we have successfully developed a new and consistent model to describe the growth of go...
Nano-sized gold particles are generated by exploiting the laser ablation synthesis in solution techn...
In this work, we have successfully developed a new and consistent model to describe the growth of go...
A systematic study of the effect of ascorbic acid concentration on the growth kinetics of gold nanor...
Despite the increasing interest in the applications of functional nanoparticles, a comprehensive und...
Gold nanoparticles (Au-NPs) are among the most intensely studied nanoscale materials. [1-2] The mole...
Gold nanorods (GNRs) are attractive and important nanomaterials that show enormous promise for a wid...
The photoreduction process of [AuCl<sub>4</sub>]<sup>−</sup> precursors in poly(<i>N</i>-vinyl-2-py...