A 3D metal-organic frameworks (MOFs) crystals film is obtained via Langmuir-Blodgett technique and used as a photonic sensor for chemical vapor detection. The MOFs crystals film exhibits both acute responses towards various chemical vapors and high controllability in terms of peak intensity and position. The method represents a general, facile and flexible strategy for the fabrication of MOFs-based photonic sensors
Metal-organic frameworks (MOFs) are crystalline nanoporous materials that consist of inorganic metal...
In this work we demonstrate the concept of stress-induced chemical detection using metal-organic fra...
The development of novel molecular sieves opens opportunities in the development of more sensitive a...
Metal-organic frameworks (MOFs), a newer class of crystalline nanoporous materials, have been in the...
The development of simple and reliable methods for recognition and detection of pharmaceuticals has ...
A novel technique for the creation of metal-organic framework (MOF) films based on soft-imprinting a...
The sorption properties and structural versatility of metal–organic frameworks (MOFs) make them supe...
We present the fabrication of one-dimensional photonic crystals (Bragg stacks) based on a microporou...
Chemical sensor is working as a widely used device which can be applied to the detection of specific...
Outstanding functional tunability underpinning metal-organic framework (MOF) confers a versatile pla...
This Communication describes an infinite 1D ribbon metal organic framework (MOF) that crystallizes t...
The quantitative detection and real-time monitoring of target chemicals in the liquid phase are made...
Owing to their structural variability, metal–organic frameworks (MOFs) lend themselves well as chemi...
New porous metal–organic framework (MOF) films based on the flexible ligand 1,3,5-tris[4-(carboxyph...
A metal organic framework (MOF) represents a new class of hybrid material built from metal ions with...
Metal-organic frameworks (MOFs) are crystalline nanoporous materials that consist of inorganic metal...
In this work we demonstrate the concept of stress-induced chemical detection using metal-organic fra...
The development of novel molecular sieves opens opportunities in the development of more sensitive a...
Metal-organic frameworks (MOFs), a newer class of crystalline nanoporous materials, have been in the...
The development of simple and reliable methods for recognition and detection of pharmaceuticals has ...
A novel technique for the creation of metal-organic framework (MOF) films based on soft-imprinting a...
The sorption properties and structural versatility of metal–organic frameworks (MOFs) make them supe...
We present the fabrication of one-dimensional photonic crystals (Bragg stacks) based on a microporou...
Chemical sensor is working as a widely used device which can be applied to the detection of specific...
Outstanding functional tunability underpinning metal-organic framework (MOF) confers a versatile pla...
This Communication describes an infinite 1D ribbon metal organic framework (MOF) that crystallizes t...
The quantitative detection and real-time monitoring of target chemicals in the liquid phase are made...
Owing to their structural variability, metal–organic frameworks (MOFs) lend themselves well as chemi...
New porous metal–organic framework (MOF) films based on the flexible ligand 1,3,5-tris[4-(carboxyph...
A metal organic framework (MOF) represents a new class of hybrid material built from metal ions with...
Metal-organic frameworks (MOFs) are crystalline nanoporous materials that consist of inorganic metal...
In this work we demonstrate the concept of stress-induced chemical detection using metal-organic fra...
The development of novel molecular sieves opens opportunities in the development of more sensitive a...