Placed at a water/air interface, particles of porphyrin-based MOFs (metal–organic frameworks) cut from large-area films display efficient, multiple-use autonomous motility powered by release of solvents incorporated in the MOF matrix and directionality dictated by their shapes. The particles can be refueled multiple times and can achieve speeds of ca. 200 mm·s–1 with high kinetic energy per unit of chemical “fuel” expended (>50 μJ·g–1). Efficiency of motion depends on the nature of the fuel used as well as the microstructure and surface wettability of the MOF surface. When multiple movers are present at the interface, they organize into “open” structures that exhibit collective, time-periodic motions. © 2017 American Chemical Society2
Bio-inspired self-cleaning surfaces have found industrial applications in oil–water separation, stai...
In this work, we present a facile approach toward producing multifunctional metal–organic framework ...
Metal–organic frameworks (MOFs) are among the most sophisticated nanostructured solids: they often p...
Placed at a water/air interface, particles of porphyrin-based MOFs (metal–organic frameworks) cut fr...
Placed at a water/air interface, particles of porphyrin-based MOFs (metal-organic frameworks) cut fr...
There have developed a variety of microsystems that harness energy and convert it to mechanical moti...
Sub‐micrometer metal–organic framework (MOF) particles form sturdy yet dynamic—that is, structurally...
During the last two decades, engineering motion with small-scale matter has received much attention ...
Micromotors (MMs) are micro and nanoscale devices capable of converting energy into autonomous motio...
Sub???micrometer metal???organic framework (MOF) particles form sturdy yet dynamic???that is, struct...
Controling the assembly of metal-organic frameworks (MOFs) using metalloligands (ligands containing ...
Herein, we report that UiO-type (UiO = University of Oslo) metal–organic frameworks (MOFs) can be tr...
Metal–organic frameworks (MOFs) are ordered arrays of polytopic organic ligands, commonly called lin...
The emergence of metal–organic frameworks (MOFs) in recent years has stimulated the interest of scie...
This review is concerned with the recent advances in metal organic framework (MOF) materials. We hig...
Bio-inspired self-cleaning surfaces have found industrial applications in oil–water separation, stai...
In this work, we present a facile approach toward producing multifunctional metal–organic framework ...
Metal–organic frameworks (MOFs) are among the most sophisticated nanostructured solids: they often p...
Placed at a water/air interface, particles of porphyrin-based MOFs (metal–organic frameworks) cut fr...
Placed at a water/air interface, particles of porphyrin-based MOFs (metal-organic frameworks) cut fr...
There have developed a variety of microsystems that harness energy and convert it to mechanical moti...
Sub‐micrometer metal–organic framework (MOF) particles form sturdy yet dynamic—that is, structurally...
During the last two decades, engineering motion with small-scale matter has received much attention ...
Micromotors (MMs) are micro and nanoscale devices capable of converting energy into autonomous motio...
Sub???micrometer metal???organic framework (MOF) particles form sturdy yet dynamic???that is, struct...
Controling the assembly of metal-organic frameworks (MOFs) using metalloligands (ligands containing ...
Herein, we report that UiO-type (UiO = University of Oslo) metal–organic frameworks (MOFs) can be tr...
Metal–organic frameworks (MOFs) are ordered arrays of polytopic organic ligands, commonly called lin...
The emergence of metal–organic frameworks (MOFs) in recent years has stimulated the interest of scie...
This review is concerned with the recent advances in metal organic framework (MOF) materials. We hig...
Bio-inspired self-cleaning surfaces have found industrial applications in oil–water separation, stai...
In this work, we present a facile approach toward producing multifunctional metal–organic framework ...
Metal–organic frameworks (MOFs) are among the most sophisticated nanostructured solids: they often p...