Description
C-flat™ is the premier holey carbon grid for cryo-transmission electron microscopy. Overview C-flat™ is an ultra-flat, holey carbon-coated TEM support grid for transmission electron microscopy (TEM). Unlike competing holey carbon films, C-flat™ is manufactured without plastics, so it is clean upon arrival and the user has no residue to contend with.
| Product code | Cat# | Hole size | Hole spacing | TEM Mesh | TEM Grid | QTy | 
| CF-2/1-2C | DCF212-25 | 2.0µm | 1µm | 200 | Cu | 25/pk | 
| DCF212-50 | 2.0µm | 1µm | 200 | Cu | 50/pk | |
| DCF212-100 | 2.0µm | 1µm | 200 | Cu | 100/pk | 
  The C-flat™ Advantage C-flat™ leads to better data sets. Made with patent pending technology, C-flat™ provides an ultra-flat surface that results in better particle dispersion and more uniform ice 
thickness. Patterning is done using deep-UV projection lithography, ensuring the most accurate and consistent hole shapes and sizes down to submicron features. The precise methods by which C-flat™ is manufactured elminate artifacts such as excess carbon and edges around holes. C-flat™ is affordable C-flat™ is available in 25, 50, and 100 packs at a per-grid price less than competing products. Applications C-flat™ holey carbon grids provide the ideal specimen support to achieve high resolution data in cryo-TEM making them an ideal choice for single particle analysis, cryo electron tomography and automated TEM analysis. Cryo-Electron Tomography (cryoET) and Single Particle Analysis ( SPA ): Numerous researchers have reported that the ultra-flat surface of C-flat™ leads to even ice thickness and uniform particle distribution within the hole areas. This optimal particle distribution results in superior data being collected as compared with other holey support films. 2µm hole sizes are standard.
 Automated TEM: C-flat™ provides a regular array of analysis sites compatible with automated data collection software such as Leginon. This compatibility, in combination with the more uniform ice thickness and particle distribution reported by numerous researchers, results in more high-quality target sites per grid. Publications using C-flat™: Does contamination buildup limit through put for automated cryoEM?, Journal of Structural Biology, Volume 154, Issue 3, June 2006, Pages 303-311 Anchi Cheng, Denis Fellmann, James Pulokas, Clinton S. Potter and Bridget Carragher Automated cryoEM data acquisition and analysis of 284 742 particles of GroEL, Journal of Structural Biology, In Press, Uncorrected Proof, Available online 22 May 2006, Scott M. Stagg, Gabriel C. Lander, James Pulokas, Denis Fellmann, Anchi Cheng, Joel D. Quispe, Satya P. Mallick, Radomir M. Avila, Bridget Carragher and Clinton S. Potter  
    
| Product | 1500x (45°) | 3000x | 10,000x | 20,000x | 
| CF-MH-2C CF-MH-4C multi hole and space | ![]()  | 
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| CF-1/1-2C CF-1/1-4C 1.0µm hole, 1.0 µm space | ![]()  | 
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| CF-1.2/1.3-2C CF-1.2/1.3-4C 1.2µm hole, 1.3 µm space | ![]()  | 
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| CF-2/1-2C CF-2/1-4C 2.0µm hole, 1.0µm space | ![]()  | 
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| CF-2/2-2C CF-2/2-4C 2.0µm hole, 2.0µm space | ![]()  | 
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| CF-2/4-2C CF-2/4-4C 2.0µm hole, 4.0µm space | ![]()  | 
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| CF-4/1-2C CF-4/1-4C 4.0µm hole, 1.0µm space | ||||
| CF-4/2-2C CF-4/2-4C 4.0µm hole, 2.0µm space | ![]()  | 
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* The Multihole device has a staggered pattern of six features consiting of three circle patterns of 1 micron, 1.4 micron and 2 micron diameter and three ellipse patterns of 1 x 4 microns, 1.4 x 5.6 microns and 2×8 microns. Articles An improved holey carbon film for cryo-electron microscopy. Quispe J, Damiano J, Mick SE, Nackashi DP, Fellmann D, Ajero TG, Carragher B, Potter CS, (2007). Microscopy and microanalysis, 13(5), 365-371.Download Pdf Improving the technique of vitreous cryo-sectioning for cryo-electron tomography: electrostatic charging for section attachment and implementation of an anti-contamination glove box. Pierson J, Fernández JJ, Bos E, Amini S, Gnaegi H, Vos M, Bel B, Adolfsen F, Carrascosa JL, Peters PJ., J Struct Biol. 2010 Feb;169(2):219-25. Epub 2009 Oct 12.Download pdf





































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