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  • PCTE(Polycarbonate) Membrane Filters, Hydrophobic / PCTE(폴리카보네이트)멤브레인필터, 소수성
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PCTE(Polycarbonate) Membrane Filters, Hydrophobic / PCTE(폴리카보네이트)멤브레인필터, 소수성

상품 선택옵션 1 개, 추가옵션 0 개

상품코드 1477468393
제조사 Sterlitech
판매사 (주)코리아사이언스
브랜드 -
배송비결제 구매금액이 100,000원 이하인 경우 배송비 3,500원이 자동 결제됩니다.
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선택옵션

선택
[PCTF0113100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 0.1 Micron, 13mm  + 310,200원
[PCTF0125100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 0.1 Micron, 25mm  + 356,400원
[PCTF0147100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 0.1 Micron, 47mm  + 488,400원
[PCTF0120030] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 0.1 Micron, 200x250mm  + 1,410,200원
[PCTF0225100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 0.2 Micron, 25mm  + 248,900원
[PCTF0247100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 0.2 Micron, 47mm  + 387,100원
[PCTF029030] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 0.2 Micron 90mm  + 242,600원
[PCTF0220030] Polycarbonate (PCTE) Membrane Filters, 0.2 Micron, Hydrophobic, 200x250mm  + 1,622,100원
[PCTF0425100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 0.4 Micron, 25mm  + 248,900원
[PCTF0447100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 0.4 Micron, 47mm  + 387,100원
[PCTF0420030] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 0.4 Micron, 200x250mm  + 1,060,000원
[PCTF1013100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 1.0 Micron, 13mm  + 216,000원
[PCTF1025100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 1.0 Micron, 25mm  + 248,900원
[PCTF1047100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 1.0 Micron, 47mm  + 387,100원
[PCTF1020030] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 1.0 Micron, 200x250mm  + 1,087,700원
[PCTF3013100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 3.0 Micron, 13mm  + 236,500원
[PCTF3025100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 3.0 Micron, 25mm  + 248,900원
[PCTF30258050] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 3.0 Micron, 25x80mm  + 202,800원
[PCTF3020030] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 3.0 Micron, 200x250mm  + 1,093,700원
[PCTF5013100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 5.0 Micron, 13mm  + 236,500원
[PCTF5025100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 5.0 Micron, 25mm  + 248,900원
[PCTF5047100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 5.0 Micron, 47mm  + 348,800원
[PCTF509030] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 5.0 Micron, 90mm  + 377,900원
[PCTF50344150] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 5.0 Micron, 34 x 41mm  + 230,500원
[PCTF50258050] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 5.0 Micron, 25x80mm  + 202,800원
[PCTF5020030] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 5.0 Micron, 200x250mm  + 1,087,700원
[PCTF8013100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 8.0 Micron, 13mm  + 236,500원
[PCTF8025100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 8.0 Micron, 25mm  + 248,900원
[PCTF8047100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 8.0 Micron, 47mm  + 387,100원
[PCTF80258050] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 8.0 Micron, 25x80mm  + 202,800원
[PCTF8020030] Polycarbonate (PCTE) Membrane Filters, PVP-Free, 8.0 Micron, 200 x 250mm  + 1,136,700원
[PCTF10013100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 10.0 Micron, 13mm  + 236,500원
[PCTF10025100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 10.0 Micron, 25mm  + 248,900원
[PCTF10047100] Polycarbonate (PCTE) Membrane Filters, Hydrophobic, 10.0 Micron, 47mm  + 365,600원
[PCTF10020030] Polycarbonate (PCTE) Membrane Filters, 10.0 Micron, 200x250mm  + 1,136,700원
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  • PCTE(Polycarbonate) Membrane Filter, Hydrophilic / PCTE(폴리카보네이트)멤브레인필터, 친수성/Pore size (10~30 Micron)

상품 정보

본제품



 

PCTE(Polycarbonate) Membrane Filters, Hydrophobic /

PCTE(폴리카보네이트) 멤브레인 필터, 소수성

These extremely strong, hydrophobic (PVP-free), polycarbonate track etch (PCTE) membrane filters

minimize extractables and are our lowest non-specific binding membranes; these properties make them

ideal for chemotaxis, cell studies, and venting applications. Sterlitech's hydrophobic PCTE membranes

are produced from a a two-step, quality-assured, proprietary manufacturing process delivering consistent

products with pore uniformity, predictable flow rates, and trusted particle retention levels. A single, integral, 

microporous polycarbonate film is used to produce the membranes and provide them with their thin, translucent,

structure and the glass-like surface characteristics that enable superior particle visibility and easy microscopic

analysis. Their pores are absolutely-rated, precisely cylindrical, and narrowly distributed, allowing their surfaces

to capture 100% of particles larger than pore sizes. These membranes are also available in hydrophilic,

PVP-coated discs for applications involving aqueous and alcoholic samples.

Applications

•Precisely controlled cylindrical pores for maximum absolute particulate capture
•Transparent, smooth flat surface for microscopic work
•Lowest, non-specific binding membrane
•Narrow pore size distribution
•No sloughing or particle shedding, one integral plastic film
•Negligible adsorption or absorption
•Low extractables 

 

 

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PCTE MEMBRANE FILTER BIBLIOGRAPHY 

 


 


  1. Allan, E.L., et al. “Spatial and temporal patterns in bacterial abundance, production and viral infection in a temporarily open/closed southern African estuary.” Estuarine, Costal, and Shelf Science (2007). 6 Aug 2009  Rhodes eResearch Repository
  2. Chapman, Christopher L. Gas Permeation through Nanoporous Polycarbonate Track-etched Membranes: Pulsed Plasma Polymerization of Thin Coatings to Modulate Gas Permeability. MS Thesis, Univ. of Texas at Arlington, 2007.
  3. Chapman, Christopher L., et al. “Plasma polymer thin film depositions to regulate gas permeability through nanoporous track etched membranes.” Journal of Membrane Science (2008). 6 Aug 2009 Science Direct
  4. Chen, Ling Xin, et al. “Electro kinetic pumping system based on nanochannel membrane for liquid delivery.” Chinese Chemical Letters 18 (2007): 352-254. 6 Aug 2009 Science Direct
  5. Cyntryn, Eddie J., et al. “Transcriptional and Physiological Responses of Bradyrhizobium japonicum to Desiccation-Induced Stress.” Journal of Bacteriology 189 (2007): 6751-6762. 6 Aug 2009 American Society for Microbiology
  6. Du, Yanan, et al. “Synthetic sandwich culture of 3D hepatocyte monolayer.” Biomaterials 29 (2008): 290-301. 6 Aug 2009 Science Direct
  7. Hopkinson, David P. “Measurements and Modeling of the Failure Pressure of Bilayer Lipid Membranes.” Dissertation (2007): 1-136. Science Direct
  8. Jang, Wan Young. “Electrical Transport Measurements of Individual Bismuth Nanowires and Carbon Nanotubes.” Graduate School of the University of Austin, Dissertation(2005). 6 Aug 2009 Science Direct
  9. Kim, W.J., et al. “Direct contact buckling of electrochemically grown gold nanowires.” Applied Physics Letters 87 (2005). 6 Aug 2009 Science Direct
  10. Kohoutek, Jirí, et al. “A novel approach for monitoring of cyanobacterial toxins: development and evaluation of the passive sampler for microcystins.” Analytical and Bioanalytical Chemistry 390 (2008): 1167-1172. National Center for Biotechnology Information
  11. McEllistrem, M. Catherine, et al. “Characterization of In Vitro Biofilm-Associated Pneumococcal Phase Variants of a Clinically Relevant Serotype 3 Clone.” Journal of Clinical Microbiology 45 (2007): 97-101. 6 Aug 2009 Science Direct
  12. Shani, Christiane, et al. “Colloid transport through saturated sand columns: Influence of physical and chemical surface properties on deposition.” Colloids and Surfaces A: Physicochemical and Engineering Aspects 316 (2008): 142-150. 6 Aug 2009 Elsevier
  13. Shlyonsky, V.G., et al. “Role of membrane curvature in mechanoelectrical transduction: Ion carriers nonactin and valinomycin sense changes in integral bending energy.” Biochimica et Biophysica Acta (BBA) – Biomembranes (2006): 1723-1731. 6 Aug 2009 Fermentek
  14. Sugui, Janyce A., et al. “Role of laeA in the Regulation of alb1gliP, Conidial Morphology, and Virulence in Aspergillus fumigatus.” Eukaryotic Cell 6 (2007) 1552-1561. 6 Aug 2009  American Society for Microbiology
  15. Sullivan, Patrick G. “Nanotubes as mitochondrial uncouplers.” United States Patent 20060275281 (2006). 6 Aug 2009  Fresh Patents
  16. Sun, Bo-Ra, et al. “Migration of Bone Marrow and Cord Blood Mesenchymal Stem Cells In Vitro Is Regulated by Stromal-Derived Factor-1-CXCR4 and Hepatocyte Growth Factor-c-met Axes and Involves Matrix Metalloproteinases.” Stem Cells (2006): 1254-1264. 6 Aug 2009  Stem Cells
  17. Taurozzi, Julian S. et al. “Silver Nanoparticle Arrays on Track Etch Membrane Support as Flow-Through Optical Sensors for Water Quality Control.” Environmental Engineering Science 24 (2007): 122-137. 6 Aug 2009 Science Direct
  18. Wang, L.J., et al. “Nanosizedparticles in bone and dissolution insensitivity of bone mineral.” Biointerphases 1 (2006): 106-111. Aug 6 2009 Science Direct
  19. Warren, Susan, et al. “Electrochemical studies of osmium-(pyrrole-methyl) pyridine-co-polymers deposited using the membrane template method.” Electrochimica Acta 53 (2008): 4550-4556. 6 Aug 2009 Science Direct
  20. Zona, Michael F., et al. “Direct charging device using nano-structures within a metal coated pore matrix.” United States Patent 20070237546 (2006). 6 Aug 2009 Fresh Patents
  21. Zona, Michael F., et al. “Nano-structure coated coronodes for low voltage charging devices.” United States Patent 20070235647 (2007). 6 Aug 2009 Fresh Patents





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