Single-Walled Carbon Nanotube
Single-Walled Carbon Nanotube

Top Single-Walled Carbon Nanotube Companies

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13 companies for Single-Walled Carbon Nanotube

YAAVIK MATERIALS & ENGINEERING PVT.LTD's Logo

Hyderabad, India

251-500 Employees

2020

YAAVIK MATERIALS AND ENGINEERING PRIVATE LIMITED is a firm established with a vision of contributing to this new era of INNOVATIVE MATERIALS. All sorts of chemicals from laboratory to industrial grade, with high purity and efficiency. Scientific Instruments, Characterization setup, equipments and other accessories. Yaavik is a platform to bring new ideas and make it. Emerging technologies gives challenge not only at the engineering level but also at the deepest level of underlying materials.

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Image for Industrial Single-Walled Carbon Nanotubes

Industrial Single-Walled Carbon Nanotubes

... YAAVIK MATERIALS AND ENGG PVT LTD SUPPLIES BEST QUALITY OF Industrial Single-Walled Carbon Nanotubes from ACS materials IN INDIA. ...

Chemical Analysis's Logo

Cambridge, United States

11-50 Employees

We are passionate about delivering top-notch products and services that exceed your expectations. Nanotechnology team in UniTechLink provides research services and and consultant in the area of Nanotechnology, nanoscience and nanomaterials. Biomedical Engineering team in UniTechLink provides research services and and consultant in the area of biomedicine, drug delivery, biosensors, and biomaterials. The UniTechLink microfluidics team offers consulting and research services in the fields of microfabrication and microfluidics. We are based in the United States and Canada and have several offices around the world. A researcher is the one who carries out this type of research. By exploring each category, you can discover how our wide range of services and products can benefit you and meet your unique needs. We take pride in providing exceptional products and services that go above and beyond.

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Image for Single Walled Carbon Nanotubes – 1 Gram

Single Walled Carbon Nanotubes – 1 Gram

... The Single Walled Carbon Nanotubes Powder SWCNTs is a research-grade product that is available in a 1-gram package. The powder has a diameter of 1-2nm and a length of 1-3um. With a purity of over 95% and a specific surface area of over 600m2/g, it is perfect for use in a variety of ...

Ossila's Logo

11-50 Employees

2009

We specialise in materials and equipment for fabricating and testing high-performance research devices. Backed by decades of experience, our mission is to pave the way to discovery by empowering the international scientific community with the tools you need to accelerate your research. From teaching to rapid prototyping and scale-up processing, we equip laboratories around the world with dependable products at accessible prices. Class AAA over a 15 mm diameter circular area at an affordable price. Long-term and low cost LED characterisation and lifetime measurement system.

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Image for Single-Walled Carbon Nanotubes

Single-Walled Carbon Nanotubes

... Ossila sell a range of single-walled carbon nanotubes, including carboxylic acid (COOH) functionalized and hydroxyl (OH) functionalized versions. Buy online ...

Nano Research Elements's Logo

Port Washington, United States

1-10 Employees

Nano Research Elements is set up by a group of expert Nanotechnologists to concentrate on giving an answer for each mind boggling complex issue with the assistance of Nanotechnology products and applications. Nanomaterials innovation has the potential to address a number of today’s biggest scientific challenges, ranging from the need for more efficient alternative energy technologies, faster and flexible electronics, and improved disease diagnosis and treatment. Nanotechnologies - to be more particular: nanomaterials - are already used in numerous products and industrial applications. Our Nanotechnology Products and Application database as of now give an outline of how nanomaterials and nanostructure applications are utilized today industrial and commercial applications across industries. Nano Research Elements offer a huge collection of nanomaterials that navigate the Periodic Table including gold, silver, iron oxide, metal and metal composites, oxides, nitrides and ceramics.

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Image for Single Walled Carbon Nanotubes(Water) Dispersion

Single Walled Carbon Nanotubes(Water) Dispersion

... Single Walled Carbon Nanotubes(Water) Dispersion - ...

Platonic Nanotech Pvt.Ltd's Logo

India

1-10 Employees

2017

We are expertise to develop customized materials as per requirement. We are suppliers of High Quality nano powder which are sold at a much lesser price than the other providers in the market. We are the global supplier and fast delivery at reasonable price provide service in Jharkhand, Mumbai, Karnataka, Bangalore, Hyderabad, Ahmedabad, Chennai, Kolkata, Delhi, Ranchi, Pune, Nashik, Patna, Gujarat and Bihar. Platonic Nanotech Pvt.Ltd uses its proprietary “Bottom Up” process for the production of high quality graphene. We at Platonic are dedicated to produce Graphene and Graphene Based Products of highest standard and make it available for a price much cheaper that the current market trends. Platonic Nanotech is a 2nd generation nanomaterials company engaged in research, development, and sale of the highest quality, most advanced form of graphene: Platonic Nanotech. Our manufacturing methods are designed in every phase to be massively scalable to meet the requirements of our largest focus industries that produce products such as cement and asphalt concretes, composites, protective coatings. Our high-quality products are available for a price much lower than our competitors.

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Single Walled Carbon Nanotubes

... Single Walled Carbon Nanotubes – Platonic Nano ...

OCSIAL LTD's Logo

London, United Kingdom

1-10 Employees

OCSiAl is the world’s largest producer of graphene nanotubes. OCSiAl’s mission is to improve specific properties of all base materials,* making the world a better place for all living beings. We are pursuing this mission by developing universal nanotube solutions and introducing them into the manufacturing industry. The name OCSiAl consists of the symbols of four chemical elements. OCSiAl’s history began in 2009 with the question “Is it possible to create an industrial technology for synthesizing graphene nanotubes scalable to hundreds of thousands of tonnes per year, and to significantly reduce the price paid by consumers by 100 times?”. In 2010, the OCSiAl company in Luxembourg was established to overcome this challenge. On 12 May, OCSiAl’s core product – TUBALL™ graphene nanotubes – was introduced to the market at the Institute of Minerals, Materials and Mining in London. OCSiAl advanced synthesis technology to unlock production unit scalability up to 50 tonnes.

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Image for Single-Walled Carbon Nanotube Synthesis Technology

Single-Walled Carbon Nanotube Synthesis Technology

... Single-Walled Carbon Nanotube Synthesis ...

ANR Technologies Pte Ltd's Logo

Singapore

1-10 Employees

2016

Get discounts for your purchases through our Discount Coupons, exclusively through our mailing list. Join our mailing list to get weekly updates of the items we have sourced for our customers!

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Product
Image for High Purity Single-walled Carbon Nanotubes (Moving Catalyst Method)

High Purity Single-walled Carbon Nanotubes (Moving Catalyst Method)

... Supply battery research material | Product Code: CNB-8-TNST High Purity Single-walled Carbon Nanotubes is produced by methane catalytic decomposition over Co-based catalyst, then experienced deep air oxidation. There is almost no amorphous carbon in this product. TNST has high ignition ...

NanoIntegris's Logo

Boisbriand, Canada

1-10 Employees

2007

NanoIntegris is the world’s leading supplier of High Purity, Semiconducting, and Metallic Solutions. Our mission is to drive progress in nanoscience and technology by providing our partners and customers with carbon nanotubes, graphene and nanomaterials that deliver breakthrough results. We are committed to raising the bar on industry standards for quality control, material characterization, and customer support. Goulet serves as President of Raymor Industries and its affiliates (including NanoIntegris Technologies) with over 25 years of corporate experience in Canada and the United States. Professor Mark Hersam is a founder of NanoIntegris and serves as the primary technical advisor. Jens Kroeger is the CTO of Raymor and NanoIntegris. Jens Kroeger is a member of a CSA Technical Committee developing the ISO standard for nanomaterials safety datasheets and the Regulatory Cooperation Council aligning the Canadian and American nanomaterials regulations.

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Image for About our Semiconducting Inks, Single-Walled Carbon Nanotubes, and Nanomaterials - NanoIntegris

About our Semiconducting Inks, Single-Walled Carbon Nanotubes, and Nanomaterials - NanoIntegris

... About our Semiconducting Inks, Single-Walled Carbon Nanotubes, and Nanomaterials - ...

PowderNano's Logo

Tallinn, Estonia

1-10 Employees

2021

Currently, our company provide its customers with nanostructured (1 nm to 100 nm) and ultrafine-structured (0.1 um to 5 um) powder materials & gives consultation in following areas such as ;.

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Image for (-OH) Functionalized Multi Walled Carbon Nanotubes, Purity: > 96%, Outside Diameter: 4-16 nm - Nano Powder Online Buy

(-OH) Functionalized Multi Walled Carbon Nanotubes, Purity: > 96%, Outside Diameter: 4-16 nm - Nano Powder Online Buy

... Single Walled Carbon Nanotubes, Purity: > 96%, Dia: 1.0 ...

Axiom Market Research & Consulting™'s Logo

Pune, India

51-100 Employees

2014

Axiom Market Research & Consulting™ is a full-service market research and data analytics company providing key market intelligence to global companies to take informed business decisions pertaining to their marketing strategy, investments, new product launches, market competition, consumer or end users, social media trends etc. Axiom Market Research & Consulting™ offers market research services such as syndicated market research, custom market research, business consulting, and consumer/end user surveys. Under Business to Consumer (B2C) market research offerings, Axiom MRC assists its clients in finding quantitative information/preferences of its brands and services such as, awareness, usages, satisfaction, tracking, ethnicity etc. Axiom MRC offers data collection services through online surveys, social media, data processing and interpretation. Axiom MRC with its experienced team of research and data analysts, has delivered more than 5000+ Market Research Projects, 3800+ Data Analytics Projects, 1200+ Business Support Projects and has a 800+ Global Client Base. Axiom Market Research & Consulting™ offers (B2B) market research reports such as syndicated market research reports, custom….

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Product
Image for Carbon Nanotubes Market | Share, Trend Analysis Report

Carbon Nanotubes Market | Share, Trend Analysis Report

... Carbon Nanotubes Market Report, By Type (Single-Walled Carbon Nanotubes (SWCNT) and Multi-Walled Carbon Nanotubes (MWCNT)), Technology (Chemical Vapor Deposition (CVD), Catalytic Chemical Vapor Deposition (CCVD) and High Pressure Carbon Monoxide Reaction (HIPCO)), Application, End-User and ...


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Facts about those Single-Walled Carbon Nanotube Results

Some interesting numbers and facts about the results you have just received for Single-Walled Carbon Nanotube

Country with most fitting companiesIndia
Amount of fitting manufacturers12
Amount of suitable service providers9
Average amount of employees1-10
Oldest suiting company2007
Youngest suiting company2021

Things to know about Single-Walled Carbon Nanotube

What is Single-Walled Carbon Nanotube?

A Single-Walled Carbon Nanotube (SWCNT) is a cylindrical nanostructure composed of a single layer of carbon atoms arranged in a hexagonal lattice. These nanotubes are characterized by their extremely small diameter, often not much larger than a few nanometers, yet they can extend to lengths of up to several micrometers or more. One of the most remarkable attributes of SWCNTs is their exceptional strength and flexibility, which, combined with their electrical conductivity, make them invaluable in various fields of technology and materials science. In electronics, for instance, their unique conductive properties are being harnessed to develop more efficient and compact semiconductors, leading to advancements in computing and telecommunications. Moreover, the high tensile strength and lightweight nature of SWCNTs are revolutionizing the materials industry, offering potential for creating stronger yet lighter materials. This has significant implications for aerospace, automotive, and construction sectors, where such characteristics can lead to more fuel-efficient vehicles and more resilient building materials. The versatility and superior properties of single-walled carbon nanotubes underscore their role as a cornerstone in the ongoing innovation within nanotechnology, promising to drive forward breakthroughs in science and engineering. Their application is seen as pivotal in pushing the boundaries of what is physically and technically achievable, marking them as a critical component in the future landscape of advanced materials and devices.


Advantages of Single-Walled Carbon Nanotube

1. Exceptional Electrical Conductivity
Single-walled carbon nanotubes (SWCNTs) exhibit remarkable electrical conductivity, surpassing that of copper. This makes them ideal for use in advanced electronic devices, where efficient current transport is crucial.

2. Superior Mechanical Strength
SWCNTs possess an unparalleled strength-to-weight ratio, significantly stronger than steel. This attribute is critical in developing lightweight yet durable materials for aerospace, automotive, and sporting goods industries.

3. High Thermal Conductivity
These nanotubes can efficiently conduct heat, outperforming even diamond in thermal conductivity. This characteristic is beneficial in applications requiring rapid heat dissipation, such as in electronics cooling systems.

4. Flexibility in Applications
The versatility of SWCNTs allows for their integration into various materials and products, enhancing performance without compromising other properties. This adaptability opens up new possibilities in nanotechnology, energy storage, and biomedical fields.


How to select right Single-Walled Carbon Nanotube supplier?

1. Purity Level
Ensure the supplier provides Single-Walled Carbon Nanotubes (SWCNTs) with high purity levels, as contaminants can significantly affect their properties and efficacy in applications.

2. Production Method
Different production methods (e.g., Chemical Vapor Deposition, Laser Ablation) impact the quality and type of SWCNTs produced. Consider the method used by the supplier and its suitability for your specific application.

3. Diameter and Length Distribution
The physical dimensions of SWCNTs influence their electrical and mechanical properties. Choose a supplier that can provide nanotubes with consistent diameter and length specifications relevant to your needs.

4. Functionalization Options
Evaluate if the supplier offers functionalized SWCNTs, which have been chemically modified to improve their dispersion in solvents or compatibility with composite materials.

5. Scale of Supply
Confirm the supplier’s capability to meet your volume requirements, whether you need small quantities for R&D or large-scale production.

6. Cost Efficiency
While not compromising on quality, assess the cost-effectiveness of the supplier’s offerings to ensure they align with your budget constraints.


What are common B2B Use-Cases for Single-Walled Carbon Nanotube?

Single-walled carbon nanotubes (SWCNTs) offer remarkable properties that are leveraged across various industries for B2B applications. In the electronics sector, their superior electrical conductivity makes them ideal for creating more efficient, smaller transistors. This advancement promises to revolutionize semiconductor manufacturing by enabling the production of ultra-fast, compact electronic devices. In the field of materials science, SWCNTs are utilized to enhance the strength and durability of composite materials. By integrating them into polymers, manufacturers can produce materials that are significantly stronger, lighter, and more resistant to impact than traditional materials. This application is crucial for aerospace and automotive industries seeking to improve the performance and fuel efficiency of their vehicles. Energy storage and conversion technologies also benefit from the unique properties of SWCNTs. Their exceptional electrical conductivity and surface area make them excellent candidates for use in the electrodes of lithium-ion batteries and supercapacitors. This leads to devices with higher energy densities and faster charging times, meeting the growing demand for efficient energy storage solutions. Moreover, SWCNTs play a pivotal role in the development of advanced sensors for environmental monitoring, healthcare, and industrial applications. Their high sensitivity to chemical and physical stimuli enables the fabrication of sensors that can detect trace amounts of gases, biomolecules, or changes in temperature with unparalleled precision. These use cases underscore the versatility and potential of single-walled carbon nanotubes in driving innovation and efficiency across multiple industries.


Current Technology Readiness Level (TLR) of Single-Walled Carbon Nanotube

Single-walled carbon nanotubes (SWCNTs) have reached a Technology Readiness Level (TRL) that varies between 4 to 6, depending on their specific application and production method. At this stage, SWCNTs have been validated in lab environments (TRL 4), and some have progressed to small-scale, prototype demonstrations in relevant environments (TRL 5-6). This variation in TRL is primarily due to the challenges associated with their consistent production and integration into commercial products. Despite their superior electrical, thermal, and mechanical properties, achieving uniformity in SWCNT characteristics such as chirality—a factor that determines their metallic or semiconducting nature—is technically demanding. Furthermore, scalable manufacturing processes that ensure high purity and yield of SWCNTs at a commercially viable cost are still under development. Techniques like chemical vapor deposition (CVD) have shown promise but require further refinement to overcome issues related to scalability and cost-effectiveness. Additionally, integrating SWCNTs into existing manufacturing processes and materials without compromising their unique properties poses technical hurdles that directly influence their TRL. As research continues to address these challenges, the TRL of SWCNTs is expected to advance, unlocking their potential in a wider range of applications.


What is the Technology Forecast of Single-Walled Carbon Nanotube?

In the short-term, advancements in single-walled carbon nanotube (SWCNT) technology are expected to focus on improving the purity and uniformity of these materials. Researchers are on the brink of developing more efficient processes for synthesizing SWCNTs with minimal impurities, enhancing their electrical and mechanical properties. This phase is likely to see the integration of SWCNTs in flexible electronics and sensors, due to their superior conductivity and flexibility compared to traditional materials. The mid-term outlook sees SWCNTs playing a pivotal role in energy storage and conversion devices. Efforts will be concentrated on harnessing their exceptional surface area and thermal conductivity to revolutionize battery and solar cell technologies. These advancements promise significantly improved energy densities and charge rates, potentially overcoming current limitations of lithium-ion batteries and photovoltaic cells. This period will also witness the scaling of production techniques, making SWCNTs more accessible for commercial applications. Looking into the long-term, the application horizon for SWCNTs is set to widen dramatically. Breakthroughs in biotechnology could enable the use of SWCNTs in drug delivery systems and medical implants, benefitting from their biocompatibility and high surface area. Additionally, the aerospace industry might leverage the unparalleled strength-to-weight ratio of SWCNTs for constructing lighter, more fuel-efficient aircraft. These advancements will mark a significant leap towards the materialization of next-generation technologies across various sectors.


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