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Ossila/Graphene Few-Layer Film/4 Pieces - PET/M2159F11

价格
¥5080.00
货号:M2159F11
浏览量:90
品牌:Ossila
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商品描述

Graphene few-layer film consists of ultra-thin layers of carbon atoms that are arranged in a hexagonal honeycomb lattice. Graphene film produced via chemical vapour deposition (CVD) is polycrystalline in nature, with multiple small graphene domains growing to merge into a continuous film.

Compared to single-layer graphene, few-layer graphene has the potential to be developed into hybrid materials or heterostructures -  via intercalation of different substances into its layered structure.

General Information

CAS number‎1034343-98-0
Chemical formulaCxHy
Molecular weightn.a.
Bandgapn.a.
SynonymsGraphene, Few-layer Graphene Film
Classification / Family2D semiconducting materials, Carbon nanomaterials, Nanomaterials, Polycyclic aromatic hydrocarbons, OLEDs, Organic photovoltaics (OPV), Organic electronics
FormFilm

Product Details

SubstrateSiO2/SiPETCopper Foil
Product codeM2158F11M2159F11M2160F50
Size1 cm × 1 cm*1 cm × 1 cm*5 cm × 10 cm*
Growth MethodCVD synthesisCVD synthesisCVD synthesis
AppearanceTransparentTransparentTransparent
Purity> 99%> 99%> 99%
Transparency> 97%> 97%> 97%
Coverage> 95%> 95%> 95%
Number of Layers2-52-52-5
Sheet Resistance400 ± 50 Ohms/sq500 ± 50 Ohms/sq450±40 Ohms/sq
Transfer methodWet chemical transferWet chemical transferDirectly grown
Substrate Thickness300 nm250 µmn.a.
MSDS

* Other sizes available: 1 cm × 2 cm, 2 cm × 2 cm or custom-made sizes, please contact us for more details.

High-quality graphene monolayer films are available on three different substrate types: SiO2/Si, PET (polyethylene terephthalate) and copper foil. Different sizes and substrates of few-layer graphene films are also available via custom order.

  • Glass (1 cm × 1 cm, 1 cm × 2 cm, 2 cm × 2 cm or custom-made sizes)
  • Sapphire (1 cm × 1 cm, 1 cm × 2 cm, 2 cm × 2 cm or custom-made sizes)
  • Nickel (1 cm × 1 cm, 1 cm × 2 cm, 2 cm × 2 cm or custom-made sizes)
  • Silicon (1 cm × 1 cm, 1 cm × 2 cm, 2 cm × 2 cm or custom-made sizes)
  • Quartz (1 cm × 1 cm, 1 cm × 2 cm, 2 cm × 2 cm or custom-made sizes)

Applications

With a unique combination of novel electronic, optical, and mechanical properties, graphene-based nanomaterials find applications in energy generation and storage. For example, they have applications in photovoltaic devices and batteries, sensors and flexible electronics, photodetectors, and biomedical applications (e.g. drug delivery, bio-imaging, and tissue engineering).

Synthesis

High quality few-layer graphene films were first grown directly  on copper foil via the chemical vapour deposition (CVD) method. The films were later transferred to the desired substrates via the wet chemical graphene-transfer process.

Usage

Monolayer graphene films are ready to use in various research purposes, such as microscopic analysis, photoluminescence and Raman spectroscopy studies. Graphene few-layer films can also be transferred to other substrates.

Pricing

SubstrateProduct codeSizeQuantity (EA)Price
SiO2/SiM2158F111 cm × 1 cm2£165.00
SiO2/SiM2158F111 cm × 1 cm4£254.00
PETM2159F111 cm × 1 cm2£165.00
PETM2159F111 cm × 1 cm4£254.00
Cu FoilM2160F505 cm × 10 cm1£397.00

Literature and Reviews

  1. Chemical vapor deposition growth of few-layer graphene for transparent conductive films, J. Pu et al., RSC Adv., 5, 44142 (2015); DOI: 10.1039/c5ra03919c.
  2. Growth and properties of few-layer graphene prepared by chemical vapor deposition, H. Park et al., Carbon 48, 1088–1094 (2010) ; doi: 10.1016/j.carbon.2009.11.030.
  3. Large Area, Few-Layer Graphene Films on Arbitrary Substrates by Chemical Vapor Deposition, A. Reina et al., Nano Lett., 9 (1), 30–35 (2009); DOI: 10.1021/nl801827v.
  4. Large-Sized Few-Layer Graphene Enables an Ultrafast and Long-Life Aluminum-Ion Battery, L. Zhang et al., Adv. Energy Mater., 7, 1700034 (2017); DOI: 10.1002/aenm.201700034.
  5. Scalable production of large quantities of defect-free few-layer graphene by shear exfoliation in liquids, K. Paton et al., Nat. Mater., 13, 624–630 (2014); DOI: 10.1038/NMAT3944.
  6. Hexagonal Single Crystal Domains of Few-Layer Graphene on Copper Foils, A. Robertson et al., Nano Lett., 11 (3), 1182–1189 (2011); DOI: 10.1021/nl104142k.

To the best of our knowledge the technical information provided here is accurate. However, Ossila assume no liability for the accuracy of this information. The values provided here are typical at the time of manufacture and may vary over time and from batch to batch.

About Ossila Founded in 2009 by organic electronics research scientists, Ossila aims to provide the components, equipment, and materials to enable intelligent and efficient scientific research and discovery. Over a decade on, we're proud to supply our products to over 1000 different institutions in over 80 countries globally. With decades of academic and industrial experience in developing organic and thin-film LEDs, photovoltaics, and FETs, we know how long it takes to establish a reliable and efficient device fabrication and testing process. As such, we have developed coherent packages of products and services - enabling researchers to jump-start their organic electronics development program. The Ossila Guarantee Free Worldwide Shipping Eligible orders ship free to anywhere in the world Fast Secure Dispatch Rapid dispatch on in-stock items via secure tracked courier services Quality Assured Backed up by our free two year warranty on all equipment Clear Upfront Pricing Clear pricing in over 30 currencies with no hidden costs Large Order Discounts Save 8% on orders over $10,300.00 and 10% on orders over $12,900.00 Expert Support Our in-house scientists and engineers are always ready to help Trusted Worldwide Great products and service. Have already recommended to many people. Dr. Gregory Welch, University of Calgary Wonderful company with reasonably priced products and so customer-friendly! Shahriar Anwar, Arizona State University The Ossila Team Prof. David Lidzey - Chairman As professor of physics at the University of Sheffield, Prof. David Lidzey heads the university’s Electronic and Photonic Molecular Materials research group (EPMM). During his career, David has worked in both academic and technical environments, with his main areas of research including hybrid organic-inorganic semiconductor materials and devices, organic photonic devices and structures and solution processed photovoltaic devices. Throughout his academic career, he has authored over 220 peer-reviewed papers. Dr. James Kingsley - Managing Director James is a co-founder and managing director of Ossila. With a PhD in quantum mechanics/nanotech and over 12 years’ experience in organic electronics, his work on the fabrication throughput of organic photovoltaics led to the formation of Ossila and the establishment of a strong guiding ethos: to speed up the pace of scientific discovery. James is particularly interested in developing innovative equipment and improving the accessibility of new materials for solution-processable photovoltaics and hybrid organic-inorganic devices. Dr. Alastair Buckley - Technical Director Alastair is a lecturer of Physics at the University of Sheffield, specialising in organic electronics and photonics. He is also a member of the EPMM research group with a focus on understanding and applying the intrinsic advantages of functional organic materials to a range of optoelectronic devices. Alastair’s experience has not been gained solely in academia; he previously led the R&D team at MicroEmissive Displays and therefore has extensive technical experience in OLED displays. He is also the editor and contributor of "Organic Light-Emitting Diodes" by Elsevier. Our Research Scientists Our research scientists and product developers have significant experience in the synthesis and processing of materials and the fabrication and testing of devices. The vision behind Ossila is to share this experience with academic and industrial researchers alike, and to make their research more efficient. By providing products and services that take the hard work out of the device fabrication process, and the equipment to enable accurate, rapid testing, we can free scientists to focus on what they do best - science. Customer Care Team The customer care team is responsible for the customer journey at Ossila. From creating and providing quotes, through to procurement and inventory management, the customer care team is devoted to providing first class customer service. The general day to day responsibilities of a customer care team member involves processing customers orders and price queries, answering customer enquiries, arranging the shipment of parcels and notifying customers of updates on their orders. Collaborations and Partnerships Please contact the customer care team for all enquires, including technical questions about Ossila products or for advice on fabrication and measurement processes. Location and Facilities Ossila is based at the Solpro Business Park in Attercliffe, Sheffield. We operate a purpose-built synthetic chemistry and device testing laboratory on site, where all of our high-purity, batch-specific polymers and other formulations are made. This is complemented by a dedicated suite of thin-film and organic electronics testing and analysis tools within the device fabrication cluster housed in a class 1000 cleanroom in the EPSRC National Epitaxy Facility in Sheffield. All our electronic equipment is manufactured on-site.