Reticular chemistry has boosted the design of thousands of metal and covalent organic frameworks for unlimited chemical compositions, structures, and sizable porosities. The ability to generate porous materials at will on the basis of geometrical design concepts is responsible for the rapid growth of the field and the increasing number of applications derived. Despite their promising features, the synthesis of targeted homo- and heterometallic titanium−organic frameworks amenable to these principles is relentlessly limited by the high reactivity of this metal in solution that impedes the controlled assembly of titanium molecular clusters. We describe an unprecedented methodology for the synthesis of heterometallic titanium frameworks by met...
The transmetalation (the replacement of metal ions) of a family of highly porous isostructural metal...
A heterometallic metal–organic framework incorporating Zn<sup>2+</sup> and Ti<sup>4+</sup> is succes...
The chemistry of metal−organic frameworks (MOFs) relies on the controlled linking of organic molecul...
Heterometallic or mixed-metal Metal-Organic Frameworks (MOFs), incorporating two or more metal ions ...
We report a new family of titanium-organic frameworks that enlarges the limited number of crystallin...
Most developments in the chemistry and applications of metal-organic frameworks (MOFs) have been mad...
Titanium–organic frameworks offer distinctive opportunities in the realm of metal–organic frameworks...
Most developments in the chemistry and applications of metal–organic frameworks (MOFs) have been ma...
Heterobimetallic Metal–Organic Frameworks (MOFs) synergically combine the properties of two metal io...
Here we describe the topological transformation of the pores of a new framework in the bio-MOF-100 f...
Compared to indirect framework modification, synthetic control of cluster composition can be used to...
Using diverse building blocks, such as different heterometallic clusters, in metal–organic framework...
Metal-organic frameworks (MOFs) are a class of hybrid, often crystalline, solids that have received ...
Here we describe the topological transformation of the pores of a new framework in the bio-MOF-100 f...
Metal–organic frameworks (MOFs) are an emerging class of porous materials constructed from metal-con...
The transmetalation (the replacement of metal ions) of a family of highly porous isostructural metal...
A heterometallic metal–organic framework incorporating Zn<sup>2+</sup> and Ti<sup>4+</sup> is succes...
The chemistry of metal−organic frameworks (MOFs) relies on the controlled linking of organic molecul...
Heterometallic or mixed-metal Metal-Organic Frameworks (MOFs), incorporating two or more metal ions ...
We report a new family of titanium-organic frameworks that enlarges the limited number of crystallin...
Most developments in the chemistry and applications of metal-organic frameworks (MOFs) have been mad...
Titanium–organic frameworks offer distinctive opportunities in the realm of metal–organic frameworks...
Most developments in the chemistry and applications of metal–organic frameworks (MOFs) have been ma...
Heterobimetallic Metal–Organic Frameworks (MOFs) synergically combine the properties of two metal io...
Here we describe the topological transformation of the pores of a new framework in the bio-MOF-100 f...
Compared to indirect framework modification, synthetic control of cluster composition can be used to...
Using diverse building blocks, such as different heterometallic clusters, in metal–organic framework...
Metal-organic frameworks (MOFs) are a class of hybrid, often crystalline, solids that have received ...
Here we describe the topological transformation of the pores of a new framework in the bio-MOF-100 f...
Metal–organic frameworks (MOFs) are an emerging class of porous materials constructed from metal-con...
The transmetalation (the replacement of metal ions) of a family of highly porous isostructural metal...
A heterometallic metal–organic framework incorporating Zn<sup>2+</sup> and Ti<sup>4+</sup> is succes...
The chemistry of metal−organic frameworks (MOFs) relies on the controlled linking of organic molecul...