The tris(pyridin-4-yl)amine ligand was found to exhibit a radical-actuated coloration phenomenon, and a novel copper-based color-changeable metal–organic framework (MOF) was synthesized via this photoactive ligand. After light irradiation, the photogenerated stable radicals in this framework induced increasing amplitude of magnetization (32%) at room temperature, being the largest enhancement among radical-based photochromic systems
In recent years, the international demand for energy has increased rapidly. As a result, the explora...
The dye encapsulated metal–organic frameworks (MOFs) are of interest for their practical application...
A new metal–organic framework (MOF) that features photoreactive zwitterionic pyridinium 4-carboxylat...
Metal–organic frameworks (MOFs) can respond to light in a number of interesting ways. Photochromism ...
Metal–organic frameworks (MOFs) can respond to light in a number of interesting ways. Photochromism ...
Stimulus-responsive metal-organic frameworks (MOFs) can be used for designing smart materials. Herei...
An electron-deficient and potentially chromic ligand has been utilized to impart redox activity, pho...
Here, we introduce a family of metal–organic frameworks (MOFs) whose photoluminescence is tunable th...
Metal−organic frameworks, typically built by bridging metal centres with organic linkers, have recen...
Luminescent metal–organic frameworks (MOFs) are appealing. In this regard, the dye molecule 1,2,4,5-...
Two classical copper(I)-cluster-based luminophores, namely, Cu 4I4 and [Cu3Pz3]2 (Pz=pyrazolate), ar...
Luminescent metal-radicals have recently received increasing attention due to their unique propertie...
In continuation of our research interest in pyrazole-based multifunctional metal organic frameworks ...
Molecular magnets with optically controlled property have significant applications in data storage a...
In recent years, the international demand for energy has increased rapidly. As a result, the explora...
The dye encapsulated metal–organic frameworks (MOFs) are of interest for their practical application...
A new metal–organic framework (MOF) that features photoreactive zwitterionic pyridinium 4-carboxylat...
Metal–organic frameworks (MOFs) can respond to light in a number of interesting ways. Photochromism ...
Metal–organic frameworks (MOFs) can respond to light in a number of interesting ways. Photochromism ...
Stimulus-responsive metal-organic frameworks (MOFs) can be used for designing smart materials. Herei...
An electron-deficient and potentially chromic ligand has been utilized to impart redox activity, pho...
Here, we introduce a family of metal–organic frameworks (MOFs) whose photoluminescence is tunable th...
Metal−organic frameworks, typically built by bridging metal centres with organic linkers, have recen...
Luminescent metal–organic frameworks (MOFs) are appealing. In this regard, the dye molecule 1,2,4,5-...
Two classical copper(I)-cluster-based luminophores, namely, Cu 4I4 and [Cu3Pz3]2 (Pz=pyrazolate), ar...
Luminescent metal-radicals have recently received increasing attention due to their unique propertie...
In continuation of our research interest in pyrazole-based multifunctional metal organic frameworks ...
Molecular magnets with optically controlled property have significant applications in data storage a...
In recent years, the international demand for energy has increased rapidly. As a result, the explora...
The dye encapsulated metal–organic frameworks (MOFs) are of interest for their practical application...
A new metal–organic framework (MOF) that features photoreactive zwitterionic pyridinium 4-carboxylat...