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Decyltriethoxysilane | CAS:2943-73-9
Decyltriethoxysilane
  • 名称:正癸基三乙氧基硅烷 | Decyltriethoxysilane
  • CAS号:2943-73-9
  • 别名:1-(Triethoxysilyl)decane; KBE 3103; SID 2265.0; Tri(ethoxo)(decyl)silane; Triethoxydecylsilane; n-Decyltriethoxysilane
  • 分子式:C16H36O3Si
  • 分子量:304.54
  • EINESC号:220-940-7

产品描述

物理化学性质

沸点 245 ºC
闪点 116 ºC
密度 0.876

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SDS

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Investigation into the mechanism of oxidation on the surface of lead selenide semiconductor structuresPopov VP, et al. Glass Phys. Chem., 29(5), 494-500 (2003) PbS:glass as broad-bandwidth near-infrared light source material.Fangyu Yue et al.Optics express, 21(2), 2287-2296 (2013-02-08) Photoconductivity of PbSe quantum-dot solids: dependence on ligand anchor group and length.Yunan Gao et al.ACS nano, 6(11), 9606-9614 (2012-10-20) Anomalous size-dependent decay of low-energy luminescence from PbS quantum dots in colloidal solution.Elena V Ushakova et al.ACS nano, 6(10), 8913-8921 (2012-09-14) Triplet exciton dissociation in singlet exciton fission photovoltaics.Priya J Jadhav et al.Advanced materials (Deerfield Beach, Fla.), 24(46), 6169-6174 (2012-09-13) Exciton relaxation in PbSe nanorods.Jun Yang et al.ACS nano, 6(9), 8120-8127 (2012-08-07) Highly effective surface passivation of PbSe quantum dots through reaction with molecular chlorine.Wan Ki Bae et al.Journal of the American Chemical Society, 134(49), 20160-20168 (2012-11-08) Influence of silver doping on electron transport in thin films of PbSe nanocrystals.Moon Sung Kang et al.Advanced materials (Deerfield Beach, Fla.), 25(5), 725-731 (2012-11-20) Utilizing the lability of lead selenide to produce heterostructured nanocrystals with bright, stable infrared emission.Pietryga JM, et al. Journal of the American Chemical Society, 130(14), 4879- 4885 (2008) The influence of interlayer molecules in luminescence of self-assembled bilayer PbS quantum dot films.Wei Lü et al.Journal of nanoscience and nanotechnology, 12(1), 410-415 (2012-04-25) Superconductivity in films of Pb/PbSe core/shell nanocrystals.Pavlo Zolotavin et al.ACS nano, 6(9), 8094-8104 (2012-07-21) Optical fiber amplifiers based on PbS/CdS QDs modified by polymers.Xiaolan Sun et al.Optics express, 21(7), 8214-8219 (2013-04-11) Composite counter electrode based on nanoparticulate PbS and carbon black: towards quantum dot-sensitized solar cells with both high efficiency and stability.Yueyong Yang et al.ACS applied materials & interfaces, 4(11), 6162-6168 (2012-10-19) The transitional heterojunction behavior of PbS/ZnO colloidal quantum dot solar cells.Shawn M Willis et al.Nano letters, 12(3), 1522-1526 (2012-02-04) Aqueous CdPbS quantum dots for near-infrared imaging.Giang H T Au et al.Nanotechnology, 23(27), 275601-275601 (2012-06-19) Saturation behaviour of colloidal PbSe quantum dot exciton emission coupled into silicon photonic circuits.Charles A Foell et al.Optics express, 20(10), 10453-10469 (2012-05-09) Interface-induced nucleation, orientational alignment and symmetry transformations in nanocube superlattices.Joshua J Choi et al.Nano letters, 12(9), 4791-4798 (2012-08-15) Simultaneous electrochemical immunoassay using CdS/DNA and PbS/DNA nanochains as labels.Fen-Ying Kong et al.Biosensors & bioelectronics, 39(1), 177-182 (2012-08-14) Dielectrophoretic placement of quasi-zero-, one-, and two-dimensional nanomaterials into nanogap for electrical characterizations.Yen-Fu Lin et al.Electrophoresis, 33(16), 2475-2481 (2012-08-18) Controlled synthesis of compositionally tunable ternary PbSe(x)S(1-x) as well as binary PbSe and PbS nanowires.Anthony C Onicha et al.ACS nano, 6(3), 2833-2843 (2012-02-22) Direct mapping of hot-electron relaxation and multiplication dynamics in PbSe quantum dots.L Miaja-Avila et al.Nano letters, 12(3), 1588-1591 (2012-02-18) Heat capacity and thermodynamic properties of lead selenide and lead telluride.Pashinkin AS, et al. Inorganic Materials, 45(11), 1226- 1229 (2009) Coherent and directional emission at 1.55 μm from PbSe colloidal quantum dot electroluminescent device on silicon.Junseok Heo et al.Optics express, 19(27), 26394-26398 (2012-01-26) High-performance broadband photodetector using solution-processible PbSe-TiO(2)-graphene hybrids.Kiran Kumar Manga et al.Advanced materials (Deerfield Beach, Fla.), 24(13), 1697-1702 (2012-03-02) Predicting nanocrystal shape through consideration of surface-ligand interactions.Clive R Bealing et al.ACS nano, 6(3), 2118-2127 (2012-02-15) Infrared colloidal lead chalcogenide nanocrystals: synthesis, properties, and photovoltaic applications.Huiying Fu et al.Nanoscale, 4(7), 2187-2201 (2012-03-03) Control of PbSe quantum dot surface chemistry and photophysics using an alkylselenide ligand.Barbara K Hughes et al.ACS nano, 6(6), 5498-5506 (2012-05-11) Temperature dependent optical properties of PbS nanocrystals.M N Nordin et al.Nanotechnology, 23(27), 275701-275701 (2012-06-19)
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