The guest-dependent flexibility of the pillared-layered metal-organic framework (MOF), Zn2bdc2dabco·X(guest), where guest = EtOH, DMF or benzene, has been examined by high-pressure single crystal X-ray diffraction. A pressure-induced structural phase transition is found for the EtOH- and DMF-included frameworks during compression in a hydrostatic medium of the guest species, which is dependent upon the nature and quantity of the guest in the channels. The EtOH-included material undergoes a phase transition from P4/mmm to C2/m at 0.69 GPa, which is accompanied by a change in the pore shape from square to rhombus via super-filling of the pores. The DMF-included material undergoes a guest-mediated phase transition from I4/mcm to P4/mmm at 0.33...
Interpenetrating metal organic frameworks are interesting functional materials exhibiting exceptiona...
Metal-organic frameworks (MOFs), in the traditional sense, are crystalline and microporous materials...
International audienceWe present an in situ powder X-ray diffraction study on the phase stability an...
Metal–organic frameworks (MOFs) are a broad and interesting class of materials known for their mecha...
We present an in situ powder X-ray diffraction study on the phase stability and polymorphism of the ...
Metal-organic frameworks (MOFs) are microporous materials with huge potential as host structures for...
Despite numerous studies on chemical and thermal stability of metal-organic frameworks (MOFs), mecha...
Pressure-induced phase transformations (PIPTs) occur in a wide range of materials. In general, the b...
Pressure-induced phase transformations (PIPTs) occur in a wide range of materials. In general, the b...
A growing field of research has evolved around the design and synthesis of a variety of porous metal...
We investigate the pressure-dependent mechanical behaviour of the zeolitic imidazolate framework ZIF...
The high-pressure behaviour of flexible zeolitic imidazolate frameworks (ZIFs) of the ZIF-62 family ...
Among the panoply of exciting properties that metal-organic frameworks (MOFs) exhibit, fully reversi...
Pressures up to 0.8 GPa have been used to squeeze a range of sterically "oversized" C5-C8 alkane gue...
Among the panoply of exciting properties that metal-organic frameworks (MOFs) exhibit, fully reversi...
Interpenetrating metal organic frameworks are interesting functional materials exhibiting exceptiona...
Metal-organic frameworks (MOFs), in the traditional sense, are crystalline and microporous materials...
International audienceWe present an in situ powder X-ray diffraction study on the phase stability an...
Metal–organic frameworks (MOFs) are a broad and interesting class of materials known for their mecha...
We present an in situ powder X-ray diffraction study on the phase stability and polymorphism of the ...
Metal-organic frameworks (MOFs) are microporous materials with huge potential as host structures for...
Despite numerous studies on chemical and thermal stability of metal-organic frameworks (MOFs), mecha...
Pressure-induced phase transformations (PIPTs) occur in a wide range of materials. In general, the b...
Pressure-induced phase transformations (PIPTs) occur in a wide range of materials. In general, the b...
A growing field of research has evolved around the design and synthesis of a variety of porous metal...
We investigate the pressure-dependent mechanical behaviour of the zeolitic imidazolate framework ZIF...
The high-pressure behaviour of flexible zeolitic imidazolate frameworks (ZIFs) of the ZIF-62 family ...
Among the panoply of exciting properties that metal-organic frameworks (MOFs) exhibit, fully reversi...
Pressures up to 0.8 GPa have been used to squeeze a range of sterically "oversized" C5-C8 alkane gue...
Among the panoply of exciting properties that metal-organic frameworks (MOFs) exhibit, fully reversi...
Interpenetrating metal organic frameworks are interesting functional materials exhibiting exceptiona...
Metal-organic frameworks (MOFs), in the traditional sense, are crystalline and microporous materials...
International audienceWe present an in situ powder X-ray diffraction study on the phase stability an...