The work presented in this thesis investigates polyoxometalates (POMs) confined within nanotubes and their structure, host-guest interactions and electrochemical properties. Utilising a suite of spectroscopic and microscopic techniques, the encapsulation of POMs within single walled carbon nanotubes (SWNTs) was revealed to be redox driven, in which spontaneous charge transfer from the SWNTs to POMs in solution gave rise to coulombic attraction between the two species, driving encapsulation of the POMs within the SWNTs. The level of SWNT oxidation was dictated by the energy levels of the corresponding encapsulant POM. In cases where spontaneous electron transfer between the two could not occur, the levels of encapsulation were seemingly lowe...
We demonstrate the success in self-assembling pyrene-modified Dawson–Wells-type polyoxometalates (PO...
Boron nitride nanotubes (BNNTs) are an emerging class of molecular container offering new functional...
Boron nitride nanotubes (BNNTs) are an emerging class of molecular container offering new functional...
The work presented in this thesis investigates polyoxometalates (POMs) confined within nanotubes and...
The work presented in this thesis investigates polyoxometalates (POMs) confined within nanotubes and...
We describe the preparation of hybrid redox materials based on polyoxomolybdates encapsulated within...
We describe the preparation of hybrid redox materials based on polyoxomolybdates encapsulated within...
We describe the preparation of hybrid redox materials based on polyoxomolybdates encapsulated within...
We describe the preparation of hybrid redox materials based on polyoxomolybdates encapsulated within...
The development of next‐generation molecular‐electronic, electrocatalytic, and energy‐storage system...
The development of next‐generation molecular‐electronic, electrocatalytic, and energy‐storage system...
The development of next‐generation molecular‐electronic, electrocatalytic, and energy‐storage system...
Understanding ion transport in solid materials is crucial in the design of electrochemical devices. ...
Understanding ion transport in solid materials is crucial in the design of electrochemical devices. ...
Understanding ion transport in solid materials is crucial in the design of electrochemical devices. ...
We demonstrate the success in self-assembling pyrene-modified Dawson–Wells-type polyoxometalates (PO...
Boron nitride nanotubes (BNNTs) are an emerging class of molecular container offering new functional...
Boron nitride nanotubes (BNNTs) are an emerging class of molecular container offering new functional...
The work presented in this thesis investigates polyoxometalates (POMs) confined within nanotubes and...
The work presented in this thesis investigates polyoxometalates (POMs) confined within nanotubes and...
We describe the preparation of hybrid redox materials based on polyoxomolybdates encapsulated within...
We describe the preparation of hybrid redox materials based on polyoxomolybdates encapsulated within...
We describe the preparation of hybrid redox materials based on polyoxomolybdates encapsulated within...
We describe the preparation of hybrid redox materials based on polyoxomolybdates encapsulated within...
The development of next‐generation molecular‐electronic, electrocatalytic, and energy‐storage system...
The development of next‐generation molecular‐electronic, electrocatalytic, and energy‐storage system...
The development of next‐generation molecular‐electronic, electrocatalytic, and energy‐storage system...
Understanding ion transport in solid materials is crucial in the design of electrochemical devices. ...
Understanding ion transport in solid materials is crucial in the design of electrochemical devices. ...
Understanding ion transport in solid materials is crucial in the design of electrochemical devices. ...
We demonstrate the success in self-assembling pyrene-modified Dawson–Wells-type polyoxometalates (PO...
Boron nitride nanotubes (BNNTs) are an emerging class of molecular container offering new functional...
Boron nitride nanotubes (BNNTs) are an emerging class of molecular container offering new functional...