Integration of surface-anchored metal-organic frameworks (surMOFs) within hierarchical architectures is necessary for potential sensing, electronic, optical, or separation applications. It is important to understand the fundamentals of film formation for these surMOFs in order to develop strategies for their incorporation with nanoscale control over lateral and vertical dimensions. This research identified processing parameters to control the film morphology for surMOFs of HKUST-1 fabricated by codeposition and seeded deposition. Time and temperature were investigated to observe film formation, to control film thickness, and to tune morphology. Film thickness was investigated by ellipsometry, while film structure and film roughness were cha...
This thesis describes the nano-engineering of self-assembly processes, to accomplish nanoscale metal...
Digital microfluidics (DMF) was demonstrated as a unique tool to scale down and automate the layer-b...
For the first time, a procedure has been established for the growth of surface-anchored metal–organi...
Integration of surface-anchored metal-organic frameworks (surMOFs) within hierarchical architectures...
Thin films can integrate the versatility and great potential found in the emerging field of metal or...
Thin films can integrate the versatility and great potential found in the emerging field of metal–or...
High resolution atomic force microscopy (AFM) is used to resolve the evolution of crystallites of a ...
Metal organic frameworks have emerged as an important new class of materials with many applications,...
High resolution atomic force microscopy (AFM) is used to resolve the evolution of crystallites of a ...
Surface-Mounted Metal–Organic Frameworks (SURMOFs) are promising materials with a wide range of appl...
Metal organic frameworks have emerged as an important new class of materials with many applications,...
The liquid phase epitaxy (LPE) of the metal-organic framework (MOF) HKUST-1 has been studied for thr...
Control over assembly, orientation, and defect-free growth of metal-organic framework (MOF) films is...
Metal-organic framework (MOF) thin films show unmatched promise as smart membranes and photocatalyti...
Metal-organic framework (MOF) thin films show unmatched promise as smart membranes and photocatalyti...
This thesis describes the nano-engineering of self-assembly processes, to accomplish nanoscale metal...
Digital microfluidics (DMF) was demonstrated as a unique tool to scale down and automate the layer-b...
For the first time, a procedure has been established for the growth of surface-anchored metal–organi...
Integration of surface-anchored metal-organic frameworks (surMOFs) within hierarchical architectures...
Thin films can integrate the versatility and great potential found in the emerging field of metal or...
Thin films can integrate the versatility and great potential found in the emerging field of metal–or...
High resolution atomic force microscopy (AFM) is used to resolve the evolution of crystallites of a ...
Metal organic frameworks have emerged as an important new class of materials with many applications,...
High resolution atomic force microscopy (AFM) is used to resolve the evolution of crystallites of a ...
Surface-Mounted Metal–Organic Frameworks (SURMOFs) are promising materials with a wide range of appl...
Metal organic frameworks have emerged as an important new class of materials with many applications,...
The liquid phase epitaxy (LPE) of the metal-organic framework (MOF) HKUST-1 has been studied for thr...
Control over assembly, orientation, and defect-free growth of metal-organic framework (MOF) films is...
Metal-organic framework (MOF) thin films show unmatched promise as smart membranes and photocatalyti...
Metal-organic framework (MOF) thin films show unmatched promise as smart membranes and photocatalyti...
This thesis describes the nano-engineering of self-assembly processes, to accomplish nanoscale metal...
Digital microfluidics (DMF) was demonstrated as a unique tool to scale down and automate the layer-b...
For the first time, a procedure has been established for the growth of surface-anchored metal–organi...