The growth of materials is directly driven by the interface environment, where mass and energy transfer occurs. To some extent, the heterogeneous interface determines the diversity of material structures. Owing to the nanoscale and time dependence of the interface environment, it is a challenging issue to describe the interface quantitatively. Here, we propose to use chemical potential difference (Delta mu) to quantify the interface environment in the synthesis of silver particles. Silver particles are synthesized by an electrodeposition approach at the interface of electrodes. The interface chemical distribution, which is regulated by the reaction rate, diffusion rate, and forced convection, is quantified by the chemical potential differen...
The early stages of the electrolytic deposition of silver onto vitreous carbon electrodes from ammon...
A perfect match: Silver deposition is one of the fastest electrochemical reactions, even though the ...
In spite of the widespread use of the chemical reduction method to obtain silver nanoparticles, the ...
The growth of materials is directly driven by the interface environment, where mass and energy trans...
Dendritic structures are widely present in nature, from river networks to snowflakes. There is a lon...
Here we report a study on the role of chemical diffusion and reaction on the morphology evolution ...
Chemical diffusion and reaction rates are two general kinetic factors involved in the formation of m...
We report an approach to synthesize silver nanowires by diffusion limitation. Silver particles are s...
Heterogeneity is the main problem of scaleups. The common strategy to solve this problem is the enha...
A perfect match: Silver deposition is one of the fastest electrochemical reactions, even though the ...
Silver particles have been deposited at externally polarised 1,2-dichloroethane (DCE)/water interfac...
Using nanoparticles as building blocks to build up hierarchical structures is the next big thing in ...
Scanning electrochemical microscopy (SECM) has been used to induce and monitor the electrodeposition...
Here, we report a general role of chemical diffusion and reaction in shaping particles. It is suppos...
Solidification and organization of silver nano-particle in a confined region between graphene sheets...
The early stages of the electrolytic deposition of silver onto vitreous carbon electrodes from ammon...
A perfect match: Silver deposition is one of the fastest electrochemical reactions, even though the ...
In spite of the widespread use of the chemical reduction method to obtain silver nanoparticles, the ...
The growth of materials is directly driven by the interface environment, where mass and energy trans...
Dendritic structures are widely present in nature, from river networks to snowflakes. There is a lon...
Here we report a study on the role of chemical diffusion and reaction on the morphology evolution ...
Chemical diffusion and reaction rates are two general kinetic factors involved in the formation of m...
We report an approach to synthesize silver nanowires by diffusion limitation. Silver particles are s...
Heterogeneity is the main problem of scaleups. The common strategy to solve this problem is the enha...
A perfect match: Silver deposition is one of the fastest electrochemical reactions, even though the ...
Silver particles have been deposited at externally polarised 1,2-dichloroethane (DCE)/water interfac...
Using nanoparticles as building blocks to build up hierarchical structures is the next big thing in ...
Scanning electrochemical microscopy (SECM) has been used to induce and monitor the electrodeposition...
Here, we report a general role of chemical diffusion and reaction in shaping particles. It is suppos...
Solidification and organization of silver nano-particle in a confined region between graphene sheets...
The early stages of the electrolytic deposition of silver onto vitreous carbon electrodes from ammon...
A perfect match: Silver deposition is one of the fastest electrochemical reactions, even though the ...
In spite of the widespread use of the chemical reduction method to obtain silver nanoparticles, the ...