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Our findings may provide an opportunity to explore a simple, efficient, cost-effective and promising sensing/catalysis activity materials in gas sensors, gas catalysis and photo-catalysis.
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Metal-organic Sierpiński triangles are particularly attractive for applications in gas separation, catalysis and sensing.
Metal-organic hybrid materials have been used for ion exchange, gas adsorption, catalysis and enantio-selective separations [1, 2].
Graphene microtube has a robust potential application in gas separation, catalysis, water treatment and electronics.
Nb2O5 has attracted great research interest due to its remarkable applications in gas sensors, catalysis, optical devices, and Li-ion batteries [9 11, 16 21].
This review will describe the recent advancements with regard to PiPs, and their development in the area of gas adsorption, catalysis, antibacterial applications and water purification.
Considerable efforts have been devoted to the synthesis and characterization of novel nanoporous materials because of their versatile applications, such as gas storage, catalysis, and energy storage applications.
Hydroxyapatite (HAP) nanostructures have wide potential applications in many fields such as drug delivery, tissue engineering, bone repair, gas sensing, catalysis and water treatment.
Since the nanoparticles are supported on the annealable and electrically conducting Nb-doped strontium titanate (STO) substrates, the samples can be used both in electrocatalysis and gas phase catalysis.
Metal organic frameworks (MOFs) are a new class of nanoporous materials that have many potential advantages over traditional nanoporous materials for several chemical technologies including gas adsorption, catalysis, membrane-based gas separation, sensing, and biomedical devices.
As a new family of 2D nanomaterials, 2D polymer-based nanosheets, featuring excellent characters, such as tunable framework structures, light weight, flexibility, high specific surface, and good semiconducting properties, have been emerging as one kind of promising functional materials for optoelectronics, gas separation, catalysis and sensing, etc.
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