Showing posts with label graphene. Show all posts
Showing posts with label graphene. Show all posts

Monday, May 18, 2015

Graphene in Electronics and Energy

The current overall graphene market is estimated to be between US$13-$15 million. However this will grow significantly in the next 10 years and is likely to be larger than projected figures from a number of market consultancies. For example, XG Sciences have over 600 customers in the automotive, electronics, battery and aerospace industries, and the company generated $4 million in revenue in 2012. Most of the major graphene producers have relationships with electronics and battery OEMs.  Details of the new report, table of contents and ordering information can be found

on Electronics.ca Publications’ web site. View the report: Graphene in Electronics and Energy.


Driven by demand from markets where advanced materials are required, graphene promises to outstrip all current nanomaterials, especially in electronics and energy storage applications. Other markets graphene is impacting include aerospace, automotive, coatings and paints, communications, sensors, solar, oil, and lubricants. The exceptional electron and thermal transport, mechanical properties, chemical stability of graphene and combinations thereof make it a potentially disruptive technology for electronics and energy applications.


Applications are coming onto the market for polymer composites and EMI shielding coatings. Graphene-based conducting inks are also finding their way into smart cards and radio-frequency identification tags. China is expecting to bring graphene products to the market in 2014 in consumer electronics. Companies such as IBM and Samsung are pursuing applications for graphene in electronics and optics. Most major Li-ion battery manufacturers and electronics companies, especially in Asia, have significant research initiatives in graphene.


Many of the current and potential applications of carbon nanotubes may be taken by graphene, as it displays enhanced properties but with greater ease of production and handling. In this regard, carbon nanotubes may be viewed as a stalking horse for commercial applications of graphene. In the next 2-3 years there is likely to be graphene enabled-applications in ultra thin flexible Li ion batteries, large supercapacitors, water membranes, biosensors, optical sensors, solar cells and conductive composites.


The projected “killer app” for graphene has been identified as transparent conductive films for displays, but that is not proven yet. Enhancement of conductive inks and composites are viewed as shorter-term opportunities.In electronics, competition from silicon in semiconductors. Other competing technologies include sliver nanowires and carbon nanotubes as well as other 2D materials such as boron nitride, molybdenum disulfide, tungsten tungsten disulfide and germanane.


 



Graphene in Electronics and Energy

Monday, April 27, 2015

Graphene in Electronics and Energy

The current overall graphene market is estimated to be between US$13-$15 million. However this will grow significantly in the next 10 years and is likely to be larger than projected figures from a number of market consultancies. For example, XG Sciences have over 600 customers in the automotive, electronics, battery and aerospace industries, and the company generated $4 million in revenue in 2012. Most of the major graphene producers have relationships with electronics and battery OEMs.  Details of the new report, table of contents and ordering information can be found

on Electronics.ca Publications’ web site. View the report: Graphene in Electronics and Energy.


Driven by demand from markets where advanced materials are required, graphene promises to outstrip all current nanomaterials, especially in electronics and energy storage applications. Other markets graphene is impacting include aerospace, automotive, coatings and paints, communications, sensors, solar, oil, and lubricants. The exceptional electron and thermal transport, mechanical properties, chemical stability of graphene and combinations thereof make it a potentially disruptive technology for electronics and energy applications.


Applications are coming onto the market for polymer composites and EMI shielding coatings. Graphene-based conducting inks are also finding their way into smart cards and radio-frequency identification tags. China is expecting to bring graphene products to the market in 2014 in consumer electronics. Companies such as IBM and Samsung are pursuing applications for graphene in electronics and optics. Most major Li-ion battery manufacturers and electronics companies, especially in Asia, have significant research initiatives in graphene.


Many of the current and potential applications of carbon nanotubes may be taken by graphene, as it displays enhanced properties but with greater ease of production and handling. In this regard, carbon nanotubes may be viewed as a stalking horse for commercial applications of graphene. In the next 2-3 years there is likely to be graphene enabled-applications in ultra thin flexible Li ion batteries, large supercapacitors, water membranes, biosensors, optical sensors, solar cells and conductive composites.


The projected “killer app” for graphene has been identified as transparent conductive films for displays, but that is not proven yet. Enhancement of conductive inks and composites are viewed as shorter-term opportunities.In electronics, competition from silicon in semiconductors. Other competing technologies include sliver nanowires and carbon nanotubes as well as other 2D materials such as boron nitride, molybdenum disulfide, tungsten tungsten disulfide and germanane.


 



Graphene in Electronics and Energy

Friday, October 10, 2014

Graphene in Electronics and Energy

The current overall graphene market is estimated to be between US$13-$15 million. However this will grow significantly in the next 10 years and is likely to be larger than projected figures from a number of market consultancies. For example, XG Sciences have over 600 customers in the automotive, electronics, battery and aerospace industries, and the company generated $4 million in revenue in 2012. Most of the major graphene producers have relationships with electronics and battery OEMs.  Details of the new report, table of contents and ordering information can be found

on Electronics.ca Publications’ web site. View the report: Graphene in Electronics and Energy.


Driven by demand from markets where advanced materials are required, graphene promises to outstrip all current nanomaterials, especially in electronics and energy storage applications. Other markets graphene is impacting include aerospace, automotive, coatings and paints, communications, sensors, solar, oil, and lubricants. The exceptional electron and thermal transport, mechanical properties, chemical stability of graphene and combinations thereof make it a potentially disruptive technology for electronics and energy applications.


Applications are coming onto the market for polymer composites and EMI shielding coatings. Graphene-based conducting inks are also finding their way into smart cards and radio-frequency identification tags. China is expecting to bring graphene products to the market in 2014 in consumer electronics. Companies such as IBM and Samsung are pursuing applications for graphene in electronics and optics. Most major Li-ion battery manufacturers and electronics companies, especially in Asia, have significant research initiatives in graphene.


Many of the current and potential applications of carbon nanotubes may be taken by graphene, as it displays enhanced properties but with greater ease of production and handling. In this regard, carbon nanotubes may be viewed as a stalking horse for commercial applications of graphene. In the next 2-3 years there is likely to be graphene enabled-applications in ultra thin flexible Li ion batteries, large supercapacitors, water membranes, biosensors, optical sensors, solar cells and conductive composites.


The projected “killer app” for graphene has been identified as transparent conductive films for displays, but that is not proven yet. Enhancement of conductive inks and composites are viewed as shorter-term opportunities.In electronics, competition from silicon in semiconductors. Other competing technologies include sliver nanowires and carbon nanotubes as well as other 2D materials such as boron nitride, molybdenum disulfide, tungsten tungsten disulfide and germanane.


 



Graphene in Electronics and Energy

Friday, September 26, 2014

Nanoelectronics Market Report

ELECTRONICS.CA PUBLICATIONS, the electronics industry market research and knowledge network, announces the availability of a new report entitled “Nanoelectronics Global Market to 2020“.

This report covers the raft of applications and end products enabled by nanotechnology and nanomaterials in the electronics sector. Also included are profiles of companies developing products and applications for the electronics sector utilizing nanomaterials and nanotechnology.


nanoelectronics market report Nanoelectronics Global Market to 2020



Nanoelectronics market report contents include technology development in the electronics sector utilizing the following materials:


Applications of nanomaterials in the following electronics sector sub-markets:




TABLE OF CONTENTS


EXECUTIVE SUMMARY

Nanotechnology is a key driver for new and innovative electronics applications.


METHODOLOGY


INTRODUCTION

Nanomaterials in electronics.


Electronic packaging

Market drivers, nanomaterials used and target market estimates.


Displays

Market drivers, nanomaterials used and target market estimates.


Data storage

Market drivers, nanomaterials used and target market estimates.


Transistors

Market drivers, nanomaterials used and target market estimates.


Photonics

Market drivers, nanomaterials used and targetmarket estimates..


Graphene

Properties, effect, applications and companies.


Nanoparticles

Properties, effect, applications and companies.


Carbon Nanotubes

Properties, effect, applications and companies.


Nanofibers

Properties, effect, applications and companies.


Nanowires

Properties, effect, applications and companies


Quantum dots

Properties, effect, applications and companies.


Fullerenes

Poperties, effect, applications and companies.


Germanane

Properties, effect and applications.


Silicene

Properties, effect and applications.


Graphdiyne

Properties, effect and applications.


Graphane

Properties, effect and applications.


Molybdenum Disulfide

Properties, effect and applications.


Graphene companies

Products, target electronics markets and contact details.


Fullerene companies

Products, target electronics markets and contact details.


Carbon nanotubes companies

Products, target electronics markets and contact details.


Nanofibers companies

Products, target electronics markets and contact details.


Nanowires companies

Products, target electronics markets and contact details.


Quantum dots companies

Products, target electronics markets and contact details.


Nanoparticles companies

Products, target electronics markets and contact details


Details of the new report and ordering information can be found on Electronics.ca Publications’ web site.
View the report: Nanoelectronics Global Market to 2020.


 



Nanoelectronics Market Report

Friday, July 4, 2014

Nanomaterials Directory 2014

The Nanomaterials Directory 2014 is the first publication ever to collate all nanomaterials producers and product developers in a single-volume, categorised by nanomaterials, types sold and countries where the sellers are based, in one easy-to-access guide. Numerous online directories and maps have been produced covering nanomaterials and nanotech companies but are either incomplete, out-dated, poor to navigate or inadequately categorised. Each section in the Nanomaterials Directory 2014 provides a succinct market introduction to the nanomaterials type from carbon nanotubes through to quantum dots, and alphabetised profiles of each producer. Microscopy, deposition and imaging equipment and instrumentation suppliers are also profiled. There is also a handy reference guide at the back of the directory which provides further distillation of nanomaterials suppliers (for example, metal oxides nanopowders producers is a single chapter as most sell more than one nanomaterial-the reference guide outlines the specific type of metal oxide nanopowders each producer sells). The reference guide also alphabetically lists each producer by country. For example, you will be able to view all the nanomaterials producers based in Canada. In addition there is also an extensive listing of all the key events and conferences in nanotech in 2014.  Details of the new report, table of contents and ordering information can be found on Electronics.ca Publications’ web site. View the report:  Nanomaterials Directory 2014.



Nanomaterials Directory 2014

Monday, June 23, 2014

Nanomaterials Directory 2014

The Nanomaterials Directory 2014 is the first publication ever to collate all nanomaterials producers and product developers in a single-volume, categorised by nanomaterials, types sold and countries where the sellers are based, in one easy-to-access guide. Numerous online directories and maps have been produced covering nanomaterials and nanotech companies but are either incomplete, out-dated, poor to navigate or inadequately categorised. Each section in the Nanomaterials Directory 2014 provides a succinct market introduction to the nanomaterials type from carbon nanotubes through to quantum dots, and alphabetised profiles of each producer. Microscopy, deposition and imaging equipment and instrumentation suppliers are also profiled. There is also a handy reference guide at the back of the directory which provides further distillation of nanomaterials suppliers (for example, metal oxides nanopowders producers is a single chapter as most sell more than one nanomaterial-the reference guide outlines the specific type of metal oxide nanopowders each producer sells). The reference guide also alphabetically lists each producer by country. For example, you will be able to view all the nanomaterials producers based in Canada. In addition there is also an extensive listing of all the key events and conferences in nanotech in 2014.  Details of the new report, table of contents and ordering information can be found on Electronics.ca Publications’ web site. View the report:  Nanomaterials Directory 2014.



Nanomaterials Directory 2014

Friday, June 20, 2014

A Breakthrough in Rechargeable Battery Applications

An engineer has made a breakthrough in rechargeable battery applications. The bottom image shows a self-standing molybdenum disulfide/graphene composite paper electrode and the top image highlights its layered structure.


Gurpreet Singh, assistant professor of mechanical and nuclear engineering at Kansas State University, and his student researchers are the first to demonstrate that a composite paper – made of interleaved molybdenum disulfide and graphene nanosheets – can be both an active material to efficiently store sodium atoms and a flexible current collector. The newly developed composite paper can be used as a negative electrode in sodium-ion batteries.


molybdenum disulfide/graphene composite The bottom image shows a self-standing molybdenum disulfide/graphene composite paper electrode and the top image highlights its layered structure.


“Most negative electrodes for sodium-ion batteries use materials that undergo an ‘alloying’ reaction with sodium,” Singh said. “These materials can swell as much as 400 to 500 percent as the battery is charged and discharged, which may result in mechanical damage and loss of electrical contact with the current collector.”


“Molybdenum disulfide, the major constituent of the paper electrode, offers a new kind of chemistry with sodium ions, which is a combination of intercalation and a conversion-type reaction,” Singh said. “The paper electrode offers stable charge capacity of 230 mAh.g-1, with respect to total electrode weight. Further, the interleaved and porous structure of the paper electrode offers smooth channels for sodium to diffuse in and out as the cell is charged and discharged quickly. This design also eliminates the polymeric binders and copper current collector foil used in a traditional battery electrode.”


The research appears in the latest issue of the journal ACS Nano in the article “MoS2/graphene composite paper for sodium-ion battery electrodes.”


For the last two years the researchers have been developing new methods for quick and cost-effective synthesis of atomically thin two-dimensional materials—graphene, molybdenum and tungsten disulfide—in gram quantities, particularly for rechargeable battery applications.


For the latest research, the engineers created a large-area composite paper that consisted of acid-treated layered molybdenum disulfide and chemically modified graphene in an interleaved structured. The research marks the first time that such a flexible paper electrode was used in a sodium-ion battery as an anode that operates at room temperature. Most commercial sodium-sulfur batteries operate close to 300 degrees Celsius, Singh said.


Singh said the research is important for two reasons:


1. Synthesis of large quantities of single or few-layer-thick 2-D materials is crucial to understanding the true commercial potential of materials such as transition metal dichalcogenides, or TMD, and graphene.


2. Fundamental understanding of how sodium is stored in a layered material through mechanisms other than the conventional intercalation and alloying reaction. In addition, using graphene as the flexible support and current collector is crucial for eliminating the copper foil and making lighter and bendable rechargeable batteries. In contrast to lithium, sodium supplies are essentially unlimited and the batteries are expected to be a lot cheaper.


“From the synthesis point of view, we have shown that certain transition metal dichalcogenides can be exfoliated in strong acids,” Singh said. “This method should allow synthesis of gram quantities of few-layer-thick molybdenum disulfide sheets, which is very crucial for applications such as flexible batteries, supercapacitors, and polymer composites. For such applications, TMD flakes that are a few atoms thick are sufficient. Very high-quality single-layer flakes are not a necessity.”


The researchers are working to commercialize the technology, with assistance from the university’s Institute of Commercialization. They also are exploring lithium and sodium storage in other nanomaterials.


Learn more about rechargeable battery market and publications that provide informed perspective and relevant analysis of emergent technologies.



A Breakthrough in Rechargeable Battery Applications

Thursday, June 19, 2014

Graphene in Electronics and Energy

The current overall graphene market is estimated to be between US$13-$15 million. However this will grow significantly in the next 10 years and is likely to be larger than projected figures from a number of market consultancies. For example, XG Sciences have over 600 customers in the automotive, electronics, battery and aerospace industries, and the company generated $4 million in revenue in 2012. Most of the major graphene producers have relationships with electronics and battery OEMs.  Details of the new report, table of contents and ordering information can be found

on Electronics.ca Publications’ web site. View the report: Graphene in Electronics and Energy.


Driven by demand from markets where advanced materials are required, graphene promises to outstrip all current nanomaterials, especially in electronics and energy storage applications. Other markets graphene is impacting include aerospace, automotive, coatings and paints, communications, sensors, solar, oil, and lubricants. The exceptional electron and thermal transport, mechanical properties, chemical stability of graphene and combinations thereof make it a potentially disruptive technology for electronics and energy applications.


Applications are coming onto the market for polymer composites and EMI shielding coatings. Graphene-based conducting inks are also finding their way into smart cards and radio-frequency identification tags. China is expecting to bring graphene products to the market in 2014 in consumer electronics. Companies such as IBM and Samsung are pursuing applications for graphene in electronics and optics. Most major Li-ion battery manufacturers and electronics companies, especially in Asia, have significant research initiatives in graphene.


Many of the current and potential applications of carbon nanotubes may be taken by graphene, as it displays enhanced properties but with greater ease of production and handling. In this regard, carbon nanotubes may be viewed as a stalking horse for commercial applications of graphene. In the next 2-3 years there is likely to be graphene enabled-applications in ultra thin flexible Li ion batteries, large supercapacitors, water membranes, biosensors, optical sensors, solar cells and conductive composites.


The projected “killer app” for graphene has been identified as transparent conductive films for displays, but that is not proven yet. Enhancement of conductive inks and composites are viewed as shorter-term opportunities.In electronics, competition from silicon in semiconductors. Other competing technologies include sliver nanowires and carbon nanotubes as well as other 2D materials such as boron nitride, molybdenum disulfide, tungsten tungsten disulfide and germanane.


 



Graphene in Electronics and Energy

Wednesday, June 18, 2014

Nanomaterials Directory 2014

The Nanomaterials Directory 2014 is the first publication ever to collate all nanomaterials producers and product developers in a single-volume, categorised by nanomaterials, types sold and countries where the sellers are based, in one easy-to-access guide. Numerous online directories and maps have been produced covering nanomaterials and nanotech companies but are either incomplete, out-dated, poor to navigate or inadequately categorised. Each section in the Nanomaterials Directory 2014 provides a succinct market introduction to the nanomaterials type from carbon nanotubes through to quantum dots, and alphabetised profiles of each producer. Microscopy, deposition and imaging equipment and instrumentation suppliers are also profiled. There is also a handy reference guide at the back of the directory which provides further distillation of nanomaterials suppliers (for example, metal oxides nanopowders producers is a single chapter as most sell more than one nanomaterial-the reference guide outlines the specific type of metal oxide nanopowders each producer sells). The reference guide also alphabetically lists each producer by country. For example, you will be able to view all the nanomaterials producers based in Canada. In addition there is also an extensive listing of all the key events and conferences in nanotech in 2014.  Details of the new report, table of contents and ordering information can be found on Electronics.ca Publications’ web site. View the report:  Nanomaterials Directory 2014.



Nanomaterials Directory 2014

Tuesday, February 11, 2014

Nanoelectronics Market Report

ELECTRONICS.CA PUBLICATIONS, the electronics industry market research and knowledge network, announces the availability of a new report entitled “Nanoelectronics Global Market to 2020“.

This report covers the raft of applications and end products enabled by nanotechnology and nanomaterials in the electronics sector. Also included are profiles of companies developing products and applications for the electronics sector utilizing nanomaterials and nanotechnology.


nanoelectronics market report Nanoelectronics Global Market to 2020



Nanoelectronics market report contents include technology development in the electronics sector utilizing the following materials:


  • Nanoparticles

  • Carbon nanotubes

  • Fullerenes and POSS

  • Graphene

  • Nanofibers

  • Nanosilver

  • Nanowires

  • Nanobuds

  • Quantum dots

  • 2-D Nanomaterials

Applications of nanomaterials in the following electronics sector sub-markets:


  • Coatings and films

  • Data storage and processing

  • Displays

  • Electronic packaging

  • Printable and flexible electronics

  • Photonics



TABLE OF CONTENTS


EXECUTIVE SUMMARY

Nanotechnology is a key driver for new and innovative electronics applications.


METHODOLOGY


INTRODUCTION

Nanomaterials in electronics.


Electronic packaging

Market drivers, nanomaterials used and target market estimates.


Displays

Market drivers, nanomaterials used and target market estimates.


Data storage

Market drivers, nanomaterials used and target market estimates.


Transistors

Market drivers, nanomaterials used and target market estimates.


Photonics

Market drivers, nanomaterials used and targetmarket estimates..


Graphene

Properties, effect, applications and companies.


Nanoparticles

Properties, effect, applications and companies.


Carbon Nanotubes

Properties, effect, applications and companies.


Nanofibers

Properties, effect, applications and companies.


Nanowires

Properties, effect, applications and companies


Quantum dots

Properties, effect, applications and companies.


Fullerenes

Poperties, effect, applications and companies.


Germanane

Properties, effect and applications.


Silicene

Properties, effect and applications.


Graphdiyne

Properties, effect and applications.


Graphane

Properties, effect and applications.


Molybdenum Disulfide

Properties, effect and applications.


Graphene companies

Products, target electronics markets and contact details.


Fullerene companies

Products, target electronics markets and contact details.


Carbon nanotubes companies

Products, target electronics markets and contact details.


Nanofibers companies

Products, target electronics markets and contact details.


Nanowires companies

Products, target electronics markets and contact details.


Quantum dots companies

Products, target electronics markets and contact details.


Nanoparticles companies

Products, target electronics markets and contact details


Details of the new report and ordering information can be found on Electronics.ca Publications’ web site.
View the report: Nanoelectronics Global Market to 2020.


 



Nanoelectronics Market Report