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크기 선택
제품정보 (DICE 배송 시 비용 별도)
Linear Formula:
CF3(CF2)5CH2CH2SiCl3
CAS 번호:
Molecular Weight:
481.54
UNSPSC Code:
12352103
NACRES:
NA.23
PubChem Substance ID:
EC Number:
278-947-6
Beilstein/REAXYS Number:
6154526
MDL number:
InChI key
PISDRBMXQBSCIP-UHFFFAOYSA-N
InChI
1S/C8H4Cl3F13Si/c9-25(10,11)2-1-3(12,13)4(14,15)5(16,17)6(18,19)7(20,21)8(22,23)24/h1-2H2
SMILES string
FC(F)(F)C(F)(F)C(F)(F)C(F)(F)C(F)(F)C(F)(F)CC[Si](Cl)(Cl)Cl
assay
97%
Quality Level
bp
192 °C (lit.)
density
1.3 g/mL at 25 °C (lit.)
General description
Trichloro(1H,1H,2H,2H-perfluorooctyl)silane (PFOCTS) is a high-performance fluorinated silane optimized for the deposition of ultra-low surface energy Self-Assembled Monolayers (SAMs). This 97% assay grade ensures maximum fluorinated chain density, providing exceptionally durable superhydrophobic and oleophobic properties. This reagent is the gold standard for creating "non-stick" surfaces in high-precision microfluidics and sensitive electronic interfaces, where it serves as a critical moisture barrier and anti-stiction layer.
Application
As a versatile molecular bridge, PFOCTS is essential for engineering intelligent interfaces and stimuli-responsive systems that enable precise interactions at the intersection of nanotechnology, biology, and electronics.
• Precision Microfluidics: Essential release agent for soft lithography (PDMS molding), ensuring high-fidelity channel replication and preventing polymer adhesion.
• Bio-Antifouling: Creates inert interfaces that minimize non-specific protein adsorption and unwanted cellular adhesion in diagnostic devices.
• Nanoelectronics (OFETs): Improves gate dielectric performance by reducing surface energy and leakage current, enhancing the air-stability of organic semiconductors.
• MEMS/NEMS Lubrication: Functions as a molecular lubricant to reduce stiction and friction in nanoscale electromechanical systems, extending device lifespan.
• Superhydrophobic Nanostructures: Functionalizes nanotube arrays to create biomimetic "slippery" surfaces for controlled droplet transport and self-cleaning medical tools.
• Precision Microfluidics: Essential release agent for soft lithography (PDMS molding), ensuring high-fidelity channel replication and preventing polymer adhesion.
• Bio-Antifouling: Creates inert interfaces that minimize non-specific protein adsorption and unwanted cellular adhesion in diagnostic devices.
• Nanoelectronics (OFETs): Improves gate dielectric performance by reducing surface energy and leakage current, enhancing the air-stability of organic semiconductors.
• MEMS/NEMS Lubrication: Functions as a molecular lubricant to reduce stiction and friction in nanoscale electromechanical systems, extending device lifespan.
• Superhydrophobic Nanostructures: Functionalizes nanotube arrays to create biomimetic "slippery" surfaces for controlled droplet transport and self-cleaning medical tools.
signalword
Danger
hcodes
Hazard Classifications
Skin Corr. 1B
supp_hazards
저장 등급
8A - Combustible corrosive hazardous materials
wgk
WGK 3
flash_point_f
188.6 °F - closed cup
flash_point_c
87 °C - closed cup
ppe
Faceshields, Gloves, Goggles, type ABEK (EN14387) respirator filter
Soluble surfactant spreading on spatially confined thin liquid films
Hanyak M, et al.
Soft Matter, 8(29), 7660-7671 (2012)
Zhenglin Li et al.
Science advances, 5(4), eaat3080-eaat3080 (2019-04-25)
Control of periodic sequential flows of multisolutions is invaluable in a variety of technology and science applications, but it requires complex and expensive external controllers. Here, we present microfluidic systems that autonomously regulate periodic sequential flows without any user instructions
Aqueous micro-contact printing of cell-adhesive biomolecules for patterning neuronal cell cultures.
Jang MJ, et al.
Journal of Neural Engineering, 9(4), 107-113 (2012)
Extensive adipogenic and osteogenic differentiation of patterned human mesenchymal stem cells in a microfluidic device
Tenstad Ellen, et al.
Lab on a chip, 10(11), 1401-1409 (2010)
Biomimetic polyimide nanotube arrays with slippery or sticky superhydrophobicity
Zhu S, et al.
Journal of Colloid and Interface Science, 344(2), 541-546 (2010)
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