Javascript must be enabled to continue!
High-Efficiency Ion Enrichment inside Ultra-Short Carbon Nanotubes
View through CrossRef
The ion-enrichment inside carbon nanotubes (CNTs) offers the possibility of applications in water purification, ion batteries, memory devices, supercapacitors, field emission and functional hybrid nanostructures. However, the low filling capacity of CNTs in salt solutions due to end caps and blockages remains a barrier to the practical use of such applications. In this study, we fabricated ultra-short CNTs that were free from end caps and blockages using ball milling and acid pickling. We then compared their ion-enrichment capacity with that of long CNTs. The results showed that the ion-enrichment capacity of ultra-short CNTs was much higher than that of long CNTs. Furthermore, a broad range of ions could be enriched in the ultra-short CNTs including alkali-metal ions (e.g., K+), alkaline-earth-metal ions (e.g., Ca2+) and heavy-metal ions (e.g., Pb2+). The ultra-short CNTs were much more unobstructed than the raw long CNTs, which was due to the increased orifice number per unit mass of CNTs and the decreased difficulty in removing the blockages in the middle section inside the CNTs. Under the hydrated-cation–π interactions, the ultra-short CNTs with few end caps and blockages could highly efficiently enrich ions.
Title: High-Efficiency Ion Enrichment inside Ultra-Short Carbon Nanotubes
Description:
The ion-enrichment inside carbon nanotubes (CNTs) offers the possibility of applications in water purification, ion batteries, memory devices, supercapacitors, field emission and functional hybrid nanostructures.
However, the low filling capacity of CNTs in salt solutions due to end caps and blockages remains a barrier to the practical use of such applications.
In this study, we fabricated ultra-short CNTs that were free from end caps and blockages using ball milling and acid pickling.
We then compared their ion-enrichment capacity with that of long CNTs.
The results showed that the ion-enrichment capacity of ultra-short CNTs was much higher than that of long CNTs.
Furthermore, a broad range of ions could be enriched in the ultra-short CNTs including alkali-metal ions (e.
g.
, K+), alkaline-earth-metal ions (e.
g.
, Ca2+) and heavy-metal ions (e.
g.
, Pb2+).
The ultra-short CNTs were much more unobstructed than the raw long CNTs, which was due to the increased orifice number per unit mass of CNTs and the decreased difficulty in removing the blockages in the middle section inside the CNTs.
Under the hydrated-cation–π interactions, the ultra-short CNTs with few end caps and blockages could highly efficiently enrich ions.
Related Results
Filling and chemical modification of carbon nanotubes
Filling and chemical modification of carbon nanotubes
In order to utilize carbon nanotubes in nanofluidic device applications as well as nanocomposite reinforcement, more research on filling, surface chemistry and interaction of carbo...
Functionalization of carbon nanotubes
Functionalization of carbon nanotubes
Carbon nanotubes have unique properties that make them attractive for different engineering applications. However, because of their chemical inertness, carbon nanotubes have to be ...
OBTAINING PARTIALLY UNZIPPED CARBON NANOTUBES FOR OXYGEN ELECTRODES
OBTAINING PARTIALLY UNZIPPED CARBON NANOTUBES FOR OXYGEN ELECTRODES
Various methods for unzipping carbon nanotubes are described, which differ only in the method of acting on multi-walled carbon nanotubes which leads to obtain a partial unzipped ca...
Synthesis, characterization, and interfacial adhesion of titania iodine‐doped nanotubes architectures on additively manufactured Ti‐6Al‐4V implant
Synthesis, characterization, and interfacial adhesion of titania iodine‐doped nanotubes architectures on additively manufactured Ti‐6Al‐4V implant
AbstractThis study aimed to synthesize, characterize, and evaluate the adhesion strength of titania nanotubes (titania nanotubes) and iodine‐doped titania nanotubes (I‐titania nano...
Research and Application of Ultra-High Pressure Intelligent Well Control Technology for Ultra-Deep Carbonate Rocks
Research and Application of Ultra-High Pressure Intelligent Well Control Technology for Ultra-Deep Carbonate Rocks
Abstract
The exploration and development of the Tarim Oilfield is vigorously advancing into ultra-deep layers. Since 2021, more than 200 deep wells of the 8000m c...
Nanomaterials in concrete: Enhancing strength and durability
Nanomaterials in concrete: Enhancing strength and durability
Carbon nanotubes (CNTs) have received great attention for their applications in concrete due to their unique properties such as high strength, flexibility, and electrical conductiv...
Thermal stability of compound stucture of silicon nanowire encapsulated in carbon nanotubes
Thermal stability of compound stucture of silicon nanowire encapsulated in carbon nanotubes
To guide the experiment research, the thermal stability of composite silicon nanowire encapsulated in carbon nanotubes is investigated by computer simulation. The cubic-diamond-str...
Mechanical and electronic properties of TiO2 nanotubes
Mechanical and electronic properties of TiO2 nanotubes
The structure, stability, Youngs modulus and electronic band structures of lepidocrocite-type and anatase-type TiO2 nanotubes were investigated using density functional theory cal...

