.Functionalization of a soft or liquid-liquid interface by a one gold nanoparticle thick “nanofilm” provides a conductive pathway to facilitate interfacial electron transfer from a lipophilic electron donor to a hydrophilic electron acceptor in a process known as interfacial redox catalysis. The gold nanoparticles in the nanofilm are charged by Fermi level equilibration with the lipophilic electron donor and act as an interfacial reservoir of electrons. Additional thermodynamic driving force can be provided by electrochemically polarising the interface. Using these principles, the biphasic reduction of oxygen by a lipophilic electron donor, decamethylferrocene, dissolved in α,α,α-trifluorotoluene was catalysed at a gold nanoparticle nanofil...
The lack of an artificial system that mimics elemental sulfur (S8) oxidation by microorganisms inhib...
An electrochemical system at the ionic liquid (IL) | oil (O) interface has been constructed and util...
Biphasic interfacial electron transfer (IET) reactions at polarisable liquid|liquid (L|L) interfaces...
peer-reviewed.Functionalization of a soft or liquid-liquid interface by a one gold nanoparticle thic...
peer-reviewedSoft or “liquid–liquid” interfaces were functionalized by roughly half a monolayer of m...
Soft or “liquid–liquid” interfaces were functionalized by roughly half a monolayer of mirror-like na...
The full text of this article will not be available in ULIR until the embargo expires on the 30/1/2...
The functionality of liquid-liquid interfaces formed between two immiscible electrolyte solutions (I...
The unique physico-chemical properties of gold nanoparticles portrayed in their chemical stability,...
The catalytic activity of Au and Au–Pd core–shell nanoparticles is investigated at the liquid–liquid...
The deposition of in-situ formed gold nanoparticles at the liquid/liquid (L/L) interface is studied ...
Electron transfer at the interface of gold nanopartiles and partially reduced MoOx and catalytic app...
The controlled electrodeposition of nanoparticles at the surface of an emulsion droplet offers entic...
Citrate-stabilized gold nanoparticles were found to spontaneously self-assemble into a lustrous film...
Control over the physical properties of nanoparticle assemblies at a liquid–liquid interface is a ke...
The lack of an artificial system that mimics elemental sulfur (S8) oxidation by microorganisms inhib...
An electrochemical system at the ionic liquid (IL) | oil (O) interface has been constructed and util...
Biphasic interfacial electron transfer (IET) reactions at polarisable liquid|liquid (L|L) interfaces...
peer-reviewed.Functionalization of a soft or liquid-liquid interface by a one gold nanoparticle thic...
peer-reviewedSoft or “liquid–liquid” interfaces were functionalized by roughly half a monolayer of m...
Soft or “liquid–liquid” interfaces were functionalized by roughly half a monolayer of mirror-like na...
The full text of this article will not be available in ULIR until the embargo expires on the 30/1/2...
The functionality of liquid-liquid interfaces formed between two immiscible electrolyte solutions (I...
The unique physico-chemical properties of gold nanoparticles portrayed in their chemical stability,...
The catalytic activity of Au and Au–Pd core–shell nanoparticles is investigated at the liquid–liquid...
The deposition of in-situ formed gold nanoparticles at the liquid/liquid (L/L) interface is studied ...
Electron transfer at the interface of gold nanopartiles and partially reduced MoOx and catalytic app...
The controlled electrodeposition of nanoparticles at the surface of an emulsion droplet offers entic...
Citrate-stabilized gold nanoparticles were found to spontaneously self-assemble into a lustrous film...
Control over the physical properties of nanoparticle assemblies at a liquid–liquid interface is a ke...
The lack of an artificial system that mimics elemental sulfur (S8) oxidation by microorganisms inhib...
An electrochemical system at the ionic liquid (IL) | oil (O) interface has been constructed and util...
Biphasic interfacial electron transfer (IET) reactions at polarisable liquid|liquid (L|L) interfaces...