Photophysical studies of chromophoric linkers in metal-organic frameworks (MOFs) are undertaken commonly in the context of sensing applications, in search of readily observable changes of optical properties in response to external stimuli. The advantages of the MOF construct as a platform for investigating fundamental photophysical behaviour have been somewhat overlooked. The linker framework offers a unique environment in which the chromophore is geometrically constrained and its structure can be determined crystallographically, but it exists in spatial isolation, unperturbed by inter-chromophore interactions. Furthermore, high-pressure studies enable the photophysical consequences of controlled, incremental changes in local environment or...
Many of the desirable properties of metal-organic frameworks (MOFs) can be tuned by chemical functio...
The isoreticular analogue of the metal-organic framework UiO-66(Zr), synthesized with the flexible t...
Metal organic frameworks (MOFs) are porous hybrid crystalline materials that consist of organic link...
Conformational changes of linker units in metal‐organic frameworks (MOFs) are often responsible for ...
In this article, we use the popular photoswitchable molecule, azobenzene, to demonstrate that the em...
In this article, we use the popular photoswitchable molecule, azobenzene, to demonstrate that the em...
In recent years, the photophysical properties of crystalline metal-organic frameworks (MOFs) have be...
Although light is a prominent stimulus for smart materials, the application of photoswitches as ligh...
Although light is a prominent stimulus for smart materials, the application of photoswitches as ligh...
Although light is a prominent stimulus for smart materials, the application of photoswitches as ligh...
Whilst many metal–organic frameworks possess the chemical stability needed to be used as functional ...
Whilst many metal–organic frameworks possess the chemical stability needed to be used as functional ...
Metal organic frameworks (MOFs) are porous hybrid crystalline materials that consist of organic lin...
Although light is a prominent stimulus for smart materials, the application of photoswitches as ligh...
Although light is a prominent stimulus for smart materials, the application of photoswitches as ligh...
Many of the desirable properties of metal-organic frameworks (MOFs) can be tuned by chemical functio...
The isoreticular analogue of the metal-organic framework UiO-66(Zr), synthesized with the flexible t...
Metal organic frameworks (MOFs) are porous hybrid crystalline materials that consist of organic link...
Conformational changes of linker units in metal‐organic frameworks (MOFs) are often responsible for ...
In this article, we use the popular photoswitchable molecule, azobenzene, to demonstrate that the em...
In this article, we use the popular photoswitchable molecule, azobenzene, to demonstrate that the em...
In recent years, the photophysical properties of crystalline metal-organic frameworks (MOFs) have be...
Although light is a prominent stimulus for smart materials, the application of photoswitches as ligh...
Although light is a prominent stimulus for smart materials, the application of photoswitches as ligh...
Although light is a prominent stimulus for smart materials, the application of photoswitches as ligh...
Whilst many metal–organic frameworks possess the chemical stability needed to be used as functional ...
Whilst many metal–organic frameworks possess the chemical stability needed to be used as functional ...
Metal organic frameworks (MOFs) are porous hybrid crystalline materials that consist of organic lin...
Although light is a prominent stimulus for smart materials, the application of photoswitches as ligh...
Although light is a prominent stimulus for smart materials, the application of photoswitches as ligh...
Many of the desirable properties of metal-organic frameworks (MOFs) can be tuned by chemical functio...
The isoreticular analogue of the metal-organic framework UiO-66(Zr), synthesized with the flexible t...
Metal organic frameworks (MOFs) are porous hybrid crystalline materials that consist of organic link...