A reaction between a Zr<sup>IV</sup> salt and a porphyrinic tetracarboxylic acid leads to a metal–organic framework (MOF) with two types of open channels, representing a MOF featuring a (4,8)-connected <b>sqc</b> net. The MOF remains intact in both boiling water and aqueous solutions with pH ranging from 1 to 11, a remarkably extensive pH range that a MOF can sustain. Given its exceptional stability and pH-dependent fluorescent intensity, the MOF can potentially be applied in fluorescent pH sensing
Metal–organic frameworks (MOFs)-based fluorescent sensors have attracted much attention due to their...
This communication describes an infinite 1D ribbon metal–organic framework (MOF) that crystallizes t...
Many of the desirable properties of metal–organic frameworks (MOFs) can be tuned by chemical functio...
A reaction between a Zr<sup>IV</sup> salt and a porphyrinic tetracarboxylic acid leads to a metal–or...
Metal–organic frameworks are a class of attractive materials for fluorescent sensing. Improvement of...
We report here the preparation of a series of Zr(IV) metal–organic frameworks (MOFs) of the MIL-140...
International audienceWe report here the preparation of a series of Zr(IV) Metal Organic Frameworks ...
International audienceWe report here the preparation of a series of Zr(IV) Metal Organic Frameworks ...
International audienceWe report here the preparation of a series of Zr(IV) Metal Organic Frameworks ...
International audienceWe report here the preparation of a series of Zr(IV) Metal Organic Frameworks ...
As the Cr2O72– anion is highly toxic, new sensors have been developing for its effective detection f...
Water instability is a crucial limiting factor in the practical application of most fluorescent meta...
pH plays an important role in understanding physiological/pathologic processes, and abnormal pH is a...
A novel Zr(IV) dicarboxylate metal organic framework (MOF) built up from an <i>s</i>-tetrazine deri...
The self-assembly of a zinc salt with the novel ligand 4,4′,4″-[(1,3,5-triazine-2,4,6-triyl)tris(s...
Metal–organic frameworks (MOFs)-based fluorescent sensors have attracted much attention due to their...
This communication describes an infinite 1D ribbon metal–organic framework (MOF) that crystallizes t...
Many of the desirable properties of metal–organic frameworks (MOFs) can be tuned by chemical functio...
A reaction between a Zr<sup>IV</sup> salt and a porphyrinic tetracarboxylic acid leads to a metal–or...
Metal–organic frameworks are a class of attractive materials for fluorescent sensing. Improvement of...
We report here the preparation of a series of Zr(IV) metal–organic frameworks (MOFs) of the MIL-140...
International audienceWe report here the preparation of a series of Zr(IV) Metal Organic Frameworks ...
International audienceWe report here the preparation of a series of Zr(IV) Metal Organic Frameworks ...
International audienceWe report here the preparation of a series of Zr(IV) Metal Organic Frameworks ...
International audienceWe report here the preparation of a series of Zr(IV) Metal Organic Frameworks ...
As the Cr2O72– anion is highly toxic, new sensors have been developing for its effective detection f...
Water instability is a crucial limiting factor in the practical application of most fluorescent meta...
pH plays an important role in understanding physiological/pathologic processes, and abnormal pH is a...
A novel Zr(IV) dicarboxylate metal organic framework (MOF) built up from an <i>s</i>-tetrazine deri...
The self-assembly of a zinc salt with the novel ligand 4,4′,4″-[(1,3,5-triazine-2,4,6-triyl)tris(s...
Metal–organic frameworks (MOFs)-based fluorescent sensors have attracted much attention due to their...
This communication describes an infinite 1D ribbon metal–organic framework (MOF) that crystallizes t...
Many of the desirable properties of metal–organic frameworks (MOFs) can be tuned by chemical functio...