In the context of sensing and transport control, nanopores play an essential role. Designing multifunctional nanopores and placing multiple surface functionalities with nanoscale precision remains challenging. Interface effects together with a combination of different materials are used to obtain local multifunctionalization of nanoscale pores within a model pore system prepared by colloidal templating. Silica inverse colloidal monolayers are first functionalized with a gold layer to create a hybrid porous architecture with two distinct gold nanostructures on the top surface as well as at the pore bottom. Using orthogonal silane- and thiol-based chemistry together with a control of the wetting state allows individual addressing of the diffe...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
In recent years there has been increasing interest in the development of new methods for conferring ...
This dissertation explores how functionalization of mesoporous silicas affects their solid-liquid in...
In the context of sensing and transport control, nanopores play an essential role. Designing multifu...
In the context of sensing and transport control, nanopores play an essential role. Designing multifu...
In the context of sensing and transport control, nanopores play an essential role. Designing multifu...
In the context of sensing and transport control, nanopores play an essential role. Designing multifu...
In the context of sensing and transport control, nanopores play an essential role. Designing multifu...
Controlling the microscopic wetting state of a liquid in contact with a structured surface is the ba...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
In recent years there has been increasing interest in the development of new methods for conferring ...
This dissertation explores how functionalization of mesoporous silicas affects their solid-liquid in...
In the context of sensing and transport control, nanopores play an essential role. Designing multifu...
In the context of sensing and transport control, nanopores play an essential role. Designing multifu...
In the context of sensing and transport control, nanopores play an essential role. Designing multifu...
In the context of sensing and transport control, nanopores play an essential role. Designing multifu...
In the context of sensing and transport control, nanopores play an essential role. Designing multifu...
Controlling the microscopic wetting state of a liquid in contact with a structured surface is the ba...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
Functional nanopores play an essential role in many biotechnological applications such as sensing, o...
In recent years there has been increasing interest in the development of new methods for conferring ...
This dissertation explores how functionalization of mesoporous silicas affects their solid-liquid in...