Six novel Zr(IV)- and Hf(IV)-based MOFs, namely DUT-67, DUT-68, and DUT-69 (DUT, Dresden University of Technology) were obtained using a modulated synthesis approach with the acetic acid as a modulator and the bent 2,5-thiophenedicarboxylate (tdc<sup>2–</sup>) as a ligand. The modulator not only increases the size of the MOF crystallites but also plays a role of a structure directing agent, affecting both the secondary building unit (SBU) connectivity and topology of the resulting frameworks. The structure of DUT-67 is based on the <b>reo</b> underlying net, characteristic for its cuboctahedral and octahedral pores and is therefore isoreticular to DUT-51. The DUT-68 material has a more complicated hierarchical pore system including rhombi...
The synthesis of zirconium and hafnium metal–organic frameworks (MOFs) often relies on coordination ...
The water-stable zirconium–tricarboxylate series of frameworks, [Zr6O4(OH)4(X)6(btc)2]·nH2O, where X...
© The Royal Society of Chemistry. The ability to retain structural integrity under processing condit...
Zr and Hf based MOFs with enhanced pore accessibility for large molecules and good hydrothermal stab...
Careful control of synthetic conditions can enhance the structural diversity of metal–organic framew...
[[abstract]]A microporous metal–organic framework (MOF) was synthesized from [Zr6O4(OH)4(C6H5COO)12]...
Three new metal–organic frameworks [MOF-525, Zr<sub>6</sub>O<sub>4</sub>(OH)<sub>4</sub>(TCPP-H<sub>...
The ongoing study of zirconium– and hafnium–porphyrinic metal–organic frameworks (MOFs) led to the d...
A Zr(IV)-based metal–organic framework (MOF), termed reo-MOF-1 [Zr6O8(H2O)8(SNDC)4], composed of 4-...
Two non-interpenetrated zirconium metal–organic frameworks (Zr-MOFs), NPF-200 and NPF-201, were synt...
UiO-66 with crystal size ranging from hundreds of nanometers to a few micrometers and with cubic and...
The modulated synthesis of metal-organic frameworks (MOFs) remains empirical and challenging. Modula...
The object of this thesis is to get a deeper understanding of the role of modulator agents in the sy...
Metal-organic frameworks (MOFs) is a class of porous crystalline material that have shown good perfo...
Brolly good MOFs: A new series of hydrophobic isoreticular porous Zr oxide dicarboxylate MOFs have b...
The synthesis of zirconium and hafnium metal–organic frameworks (MOFs) often relies on coordination ...
The water-stable zirconium–tricarboxylate series of frameworks, [Zr6O4(OH)4(X)6(btc)2]·nH2O, where X...
© The Royal Society of Chemistry. The ability to retain structural integrity under processing condit...
Zr and Hf based MOFs with enhanced pore accessibility for large molecules and good hydrothermal stab...
Careful control of synthetic conditions can enhance the structural diversity of metal–organic framew...
[[abstract]]A microporous metal–organic framework (MOF) was synthesized from [Zr6O4(OH)4(C6H5COO)12]...
Three new metal–organic frameworks [MOF-525, Zr<sub>6</sub>O<sub>4</sub>(OH)<sub>4</sub>(TCPP-H<sub>...
The ongoing study of zirconium– and hafnium–porphyrinic metal–organic frameworks (MOFs) led to the d...
A Zr(IV)-based metal–organic framework (MOF), termed reo-MOF-1 [Zr6O8(H2O)8(SNDC)4], composed of 4-...
Two non-interpenetrated zirconium metal–organic frameworks (Zr-MOFs), NPF-200 and NPF-201, were synt...
UiO-66 with crystal size ranging from hundreds of nanometers to a few micrometers and with cubic and...
The modulated synthesis of metal-organic frameworks (MOFs) remains empirical and challenging. Modula...
The object of this thesis is to get a deeper understanding of the role of modulator agents in the sy...
Metal-organic frameworks (MOFs) is a class of porous crystalline material that have shown good perfo...
Brolly good MOFs: A new series of hydrophobic isoreticular porous Zr oxide dicarboxylate MOFs have b...
The synthesis of zirconium and hafnium metal–organic frameworks (MOFs) often relies on coordination ...
The water-stable zirconium–tricarboxylate series of frameworks, [Zr6O4(OH)4(X)6(btc)2]·nH2O, where X...
© The Royal Society of Chemistry. The ability to retain structural integrity under processing condit...