The future of materials chemistry will be defined by our ability to precisely arrange components that have considerably larger dimensions and more complex compositions than conventional molecular or macromolecular building blocks. However, exerting structural and constitutional control in the assembly of nanoscale entities presents a considerable challenge. Dynamic covalent nanoparticles are emerging as an attractive category of reaction-enabled solution-processable nanosized building block through which the rational principles of molecular synthetic chemistry can be extended into the nanoscale. From a mixture of two hydrazone-based dynamic covalent nanoparticles with complementary reactivity, specific molecular instructions trigger selecti...
The objective of this research is to develop regulated supramolecular polymerization from synthetic ...
Developments in the assembly of nanoparticles at liquid–liquid interfaces are reviewed where the ass...
The ability to control the assembly of nanoparticle building blocks is critically important for the ...
The future of materials chemistry will be defined by our ability to precisely arrange components tha...
This work was supported by the EPSRC (EP/K016342/1, EP/P505097/1, EP/M506631/1) and the Leverhulme T...
This work was supported by the EPSRC (EP/K016342/1 and EP/J500549/1), the University of St Andrews a...
Rational and generalizable methods for engineering surface functionality will be crucial to realizin...
The functional versatility of a chemical system is ultimately dictated by the availability of distin...
This work was funded by the EPSRC (EP/K016342/1, EP/M506631/1) and the Leverhulme Trust (RPG-2015-04...
The capacity to respond or adapt to environmental changes is an intrinsic property of living systems...
The extraordinary and unique properties exhibited by monolayer-stabilised metal nanoparticles sugge...
This work was supported by the EPSRC (EP/K016342/1 and EP/M506631/1), the Leverhulme Trust (RPG-2015...
Reliability and predictability in methods that produce pure, consistent, and monodisperse products i...
Supramolecular chemistry is actively exploring systems undergoing self-organization, i.e. systems ca...
Existing methods for the covalent functionalization of nanoparticles rely on kinetically controlled ...
The objective of this research is to develop regulated supramolecular polymerization from synthetic ...
Developments in the assembly of nanoparticles at liquid–liquid interfaces are reviewed where the ass...
The ability to control the assembly of nanoparticle building blocks is critically important for the ...
The future of materials chemistry will be defined by our ability to precisely arrange components tha...
This work was supported by the EPSRC (EP/K016342/1, EP/P505097/1, EP/M506631/1) and the Leverhulme T...
This work was supported by the EPSRC (EP/K016342/1 and EP/J500549/1), the University of St Andrews a...
Rational and generalizable methods for engineering surface functionality will be crucial to realizin...
The functional versatility of a chemical system is ultimately dictated by the availability of distin...
This work was funded by the EPSRC (EP/K016342/1, EP/M506631/1) and the Leverhulme Trust (RPG-2015-04...
The capacity to respond or adapt to environmental changes is an intrinsic property of living systems...
The extraordinary and unique properties exhibited by monolayer-stabilised metal nanoparticles sugge...
This work was supported by the EPSRC (EP/K016342/1 and EP/M506631/1), the Leverhulme Trust (RPG-2015...
Reliability and predictability in methods that produce pure, consistent, and monodisperse products i...
Supramolecular chemistry is actively exploring systems undergoing self-organization, i.e. systems ca...
Existing methods for the covalent functionalization of nanoparticles rely on kinetically controlled ...
The objective of this research is to develop regulated supramolecular polymerization from synthetic ...
Developments in the assembly of nanoparticles at liquid–liquid interfaces are reviewed where the ass...
The ability to control the assembly of nanoparticle building blocks is critically important for the ...