MWCNT as Mechanical Stabilize
USD $0.1 - $1 /Gram
Min.Order:10 Grams
INTELLIGENT MATERIALS PRIVATE LIMITED
It has been known that the electrode in batteries, which is made of carbon (partially graphitic carbon), undergoes disintegration during the charge-discharge cycles of the battery operation. In Li ion batteries, since Li ions go in and out of the electrodes during charging and discharging, there occurs expansion and contraction of the electrode materials and hence, large amounts of stress. With only the partially graphitized carbon electrode, the microscale grains fall apart during these expansion/contraction cycles and finally lose contact with each other, decreasing electrochemical activity (significantly changing discharge capacity). With the MWCNTs in the electrodes, grains in the electrodes remain connected even after a large number of cycles because the nanotubes or fibers facilitate this connectivity.
SPECIFICATION:
Materials | Multi Walled Carbon Nanotubes Sigma Aldrich |
Stock No | NS6130-06-646 |
Category | M-LL-1 |
Diameter | 20-30nm |
Length | 15-30μm |
Purity | >95% (MWNT) |
Amorphous carbon | <3% |
Residue ( calcination in air) | <2% |
Average interlayer distance | 0.34nm |
Special surface area | 90-350* m2/g |
Bulk density | 0.05-0.17 g/cm3 |
Real density | 1-2 g/cm3 |
Charging * | 2180 (Capacity: mA h/g) |
Discharging* | 534 (Capacity: mA h/g) |
Volume Resistivity | 0.1-0.15 ohm.cm ( measured at pressure in powder) |
Available Quantities | 10Gms, 25Gms, 50Gms, 100Gms and larger quantites |
1 Introduction
Carbon nanotubes (CNTs) describe a family of nanomaterials made up entirely of carbon. In this family, multi-walled carbon nanotubes (MWCNTs) are of special interest for the industry and will be the subject of this paper. Structurally MWCNTs consist of multiple layers of graphite superimposed and rolled in on themselves to form a tubular shape.
2 Improved Properties
Such cylindrical graphitic polymeric structures have novel or improved properties that make them potentially useful in a wide variety of applications in electronics, optics and other fields of materials science. Carbon nanotubes are endowed with exceptionally high material properties, very close to their theoretical limits, such as electrical and thermal conductivity, strength, stiffness, and toughness. Moreover, MWCNTs are polymers of pure carbon and can be reacted and manipulated using the rich chemistry of carbon. This provides opportunity to modify the structure and to optimise solubility and dispersion, allowing innovative applications in materials, electronics, chemical processing and energy management, to name just a few. In summary, three properties of MWCNTs are specifically interesting for the industry: the electrical conductivity (as conductive as copper), their mechanical strength (Up to 15 to 20 times stronger than steel and 5 times lighter) and their thermal conductivity (same as that of diamond and more than five times that of copper). A combination of these impressive properties enables a whole new variety of useful and beneficial applications.
3 Conclusion
Carbon nanotubes are endowed with exceptionally high material properties, very close to their theoretical limits. A combination of these impressive properties enables a whole new variety of useful and beneficial applications. Depending of the amount of R&D efforts necessary to bring a particular product to the market, it can be differentiated between short, mid and long-term applications. Current or short-term applications are often based on the use of MWCNTs as a superior replacement of electrically conductive carbon blacks. This is especially advantageous in the automotive and electronic industries. New structural composite materials based on CNT reinforced thermoplastics combine low density and strong mechanical properties. Currently almost every sports item on the market can be improved by using CNT. This will open the way to new developments in particular by replacing metals in various 5 Page 5 / 6 mechanical applications where a weight reduction could save energy, like in automotive industry. On the medium to long-term a wide range of industrial sectors may benefit from the use of CNT. Due to the nature of some of these industries, more technical testing and longer certification time will be required before a market entry is possible. Improved mechanical properties of epoxy–carbon fiber composites can be used for wind power generators and in the aircraft industry. From improved textiles to electrical conductive ink for printable circuits, the range of impacted industries is staggering.
Description:
Conceptually, the structure of a SWCNT is a one-atom-thick layer of graphite, called graphene, wrapped into a seamless cylinder with either open or closed ends. As their name implies, MWCNTs consist of multiple concentric layers of graphene that form a tube shape.
By themselves, CNTs can be metallic or semi-conducting, and are uniquely strong. The many applications for CNTs are based on their unique structure, although some can use either MWCNTs or SWCNTs. MWCNTs are used today in conducting polymers; for example, in electrostatic spray operations. Due to their unique features, SWCNT are required for some key electronic applications such as memory, semiconductor components and transparent conducting films for touch screens, displays, solar cells and other devices. These and other applications were highlighted in “Carbon Nanotubes:
Nanoshel Carbon Nanotubes, Graphene and Nanomaterials
Nanoshel sells purest and cheapest Carbon Nanotubes in the world. Selling in Ton quantities to various Industries from Coating and Plastic to Technology companies. Various Catalogue companies are buying CNTs from us in Ton and Kg quantities.
Carbon Nanotubes is produced by Chemical Vapor Deposition (CVD) method by Nanoshel and depending on the diameter one can obtain either single-walled Carbon Nanotubes(SWCNTs) or multi-walled Carbon Nanotubes (MWCNTs). Our current capacity for the production of MWCNTs far exceeds that of other suppliers.
List of relevant Nanomaterial’s for Industry and Researchers
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2. Buy 99% pure Multi walled Carbon Nanotubes in Ton quantities for Industrial use.
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5. Buy Quartz Fabric for Aero Space research having 0.2 mm thickness having amazing results.
6. Buy Silicon Wafers for materials research applied to semiconductor technology.
7. Buy Graphene Nano Powder, Dispersion and Pallets for research purpose in Gram quantities.
8. Buy Shape Memory Polymer for advanced polymer applications in Killogram and Gram quantities.
High Conductive Material MWCNT Multi Walled Carbon Nanotubes
1. Carbon nanotubes is the nano grade tubular graphite crystals, which consists of monolayer or multilayer flakegraphite that surround the center shaft according to certain spiral angle curly and into the seamless cylindrical tube. Because of special construction, it has many special properties and can be used in electronics, machinery, medicine, energy, chemicals, optics and other fields of materials science, as well as potential uses in architectural fields. They exhibit extraordinary strength and unique electrical properties, and are efficient thermal conductors.
2. The strength and flexibility of carbon nanotubes make them of potential use in controlling other nanoscale structures, which suggests they will have an important role in nanotechnology engineering.
3. Due to the difference of its diameter and helix angle, a carbon nanotube can be metallic attribute or semi-conductive attribute. So, can use it to make molecular-scale diode, and the diode will be as small as nanometer which is much smaller than the universal one at present.
4. Carbon nanotubes has the highest strength, which is much stronger than the steel. At the same time, carbon nanotube is very light in weight, which is only one tenth of the steel. It has great application perspectives in the field of composite materials and will be great influence to aerospace and aeronautics.
5. Carbon nanotube has excellent field emission performance. It can be used in making flat panel display device and instead of the big and heavy cathode electron tube technique. Besides, carbon nanotube also can be used in making molecule bearings and nano robot. It is suitable to use as energy storage material such as hydrogen storage. In medicine technique, it can as nano container and to achieve control the dosage.
Application of multi walled carbon nanotubes :
1. Solar cell,fuel cell
2. Composite
3. Supercapacitor
4. Li Battery
5. EMI
6. Textile
7. Making flat panel display device
8. Use as energy storage material such as hydrogen storage
9. In medicine technique , it can as nano container and to achieve control the dosage.
Advantage:
1. We are manufacturer: We produce products by our own factory, so we can offer you with wholesale price.
2. Low MOQ: It can meet your test very well.
3. Specify purity Accepted: We can produce product's purity as you required.
4. Good Service: We treat clients as friend.
5. Good Quality: We have strict quality control system .Good reputation in the market.
6. Fast & Cheap Delivery: We have big discount from forwarder (Long Contract).
Packaging & Delivery:
Packaging Details: | Bag or Bottle or as request for multi-Walled carbon Nanotubes |
Delivery Detail: | 2-3 days for MWCNT AFTER CONFIRMATION ORDER |
Company Introduction:
We are privileged to have a support of highly experienced and efficient team of professionals which enable us to manufacture and supply a quality array of Carbon Nanotubes, Metal and Alloy Nanoparticles, Oxides Allied Nanoparticles and Nanoparticles. All these professionals are well aware with all the aspects of chemicals and help us in processing the best quality products. Due to the hard work and dedication of these team members, we have been able to successfully maintaining a strong hold in the industry.
Our team includes the following members:
Chemical experts
Machine operators
Quality controllers
Research associates
Warehousing experts
Packaging experts
Sales and marketing professional
Skilled and semi-skilled labor
About Nanoshel Nanomaterial
Nanoshel LLC is a Wilmington, Delaware based nanotechnology company specializing in the commercialization of wide range of Nanoparticles and innovative materials of 21st century. Nanoshel is revolutionizing nanomaterials where traditional materials fall short.
Since 2005, Nanoshel has been exploring markets, developing innovative technologies, and providing breakthrough solutions using our Nanomaterials expertise. What’s interesting about materials on the Nano Scale – Contrary to popular belief is that size really does matter. That’s because when familiar materials are reduced to Nano proportions, they begin to develop odd properties. For example, plastics can conduct electricity, gold particles can appear red or green and solids can turn into liquids almost spontaneously at room temperature. While not all material is subject to change, the manipulation of such Nano change is a cornerstone of nanotechnology research.
At the Nano scale, substances may behave differently or better compared to the same substances at macro sizes. For instance, Gold can change Colour, Carbon can conduct heat and electricity better Silver has improved antimicrobial properties. Other changes that occur to substances at the Nano scale can include: Becoming super-elastic, Becoming more chemically reactive, Getting physically stronger or weaker, and Being able to cope with massive changes in temperature and pressure. It’s because of these unique properties that nanotechnology could be used in such a huge range of products.
Nanoshel Carbon Nanotubes, Graphene and Nanomaterials
Nanoshel sells purest and cheapest Carbon Nanotubes in the world. Selling in Ton quantities to various Industries from Coating and Plastic to Technology companies. Various Catalogue companies are buying CNTs from us in Ton and Kg quantities.
Carbon Nanotubes is produced by Chemical Vapor Deposition (CVD) method by Nanoshel and depending on the diameter one can obtain either single-walled Carbon Nanotubes(SWCNTs) or multi-walled Carbon Nanotubes (MWCNTs). Our current capacity for the production of MWCNTs far exceeds that of other suppliers.
List of relevant Nanomaterial’s for Industry and Researchers
1. Buy 99% pure Carbon Nanotubes (MWCNT), at an amazing price of US$100/Kg.
2. Buy 99% pure Multi walled Carbon Nanotubes in Ton quantities for Industrial use.
3. Buy metaloxide nanopowders for research & industrial use at prices seen never before.
4. Buy Aluminium nano powders for defence research with amazing results tested in defence labs.
5. Buy Quartz Fabric for Aero Space research having 0.2 mm thickness having amazing results.
6. Buy Silicon Wafers for materials research applied to semiconductor technology.
7. Buy Graphene Nano Powder, Dispersion and Pallets for research purpose in Gram quantities.
8. Buy Shape Memory Polymer for advanced polymer applications in Killogram and Gram quantities.
Our Bio Nano conjugation Services include
1. Antibody and protein biotinylation and fluorescent labeling.
2. Antibody-enzyme conjugates and other protein-protein linkages.
3. Conjugations for peptide immunogens and vaccines.
4. Conjugations with hydrophobic peptides.
5. Pegylation
6. Conjugate vaccines and proprietary chemistry for preparing Bio Nano Conjugates.
7. Custom Conjugated Antibodies: Our Custom services provide personalized solutions designed to supply researchers with the widest choice of tools to support their studies. We are powering Drug Discovery through Conjugation Chemistry.
Our Business Areas
1. MetalNanopowders
2. Compound Nanopowders
3. Metal Oxide Nanopowders
4. Nano Particle Dispersions
5. Single Walled Carbon Nano Tubes
6. Multi Walled Carbon Nano Tubes
7. Alloy Nano Powders, Clay Nanopowders, Shape Memory Polymers, Silicon Wafers, Sputtering Targets, Copper Foam etc.
Nanoshel Consulting – Biotechnology and Nanotechnology Product Development, Strategic Consultancy and Project Management.
Biotechnology Nanotechnology research, consultancy and product development. We specialize in delivering innovative solutions to industry across the life sciences and technology sectors. Nanoshel brings together teams of leading researchers from our partner institutions and employs a unique business model to deliver commercially driven research, consultancy and problem solving for its clients. This effectively removes the project delivery risk, ensuring that our academic partners deliver to time, budget and quality.
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