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关键词:'291811'
显示 1-13 共 13 条结果 关于 "291811" 范围 论文
Jing-Wei Xu et al.
Colloids and surfaces. B, Biointerfaces, 133, 148-155 (2015-06-22)
Electrospun nanofibers with antibacterial activity are greatly promising for medical treatment and water purification. Herein we report antibacterial nanofibers electrospun from a series of poly(dimethylamino ethyl methacrylate-co-alkyl methacrylates) (poly(DMAEMA-co-AMA)) and to distinguish the effects of free and cross-linked cations derived
Comparison of thermal and photo polymerization of lauryl methacrylate monolithic columns for CEC
Bernabe Zafon V, et al.
Electrophoresis, 30(11), 1939-1936 (2009)
Zheng Xing et al.
Physical chemistry chemical physics : PCCP, 19(32), 21426-21435 (2017-08-02)
This work investigates the effect of atmosphere on pyrolysis of a polymer matrix (precursor) for directing its transformation towards more disordered graphene species and smaller graphitic nanograins. These two structural characteristics are crucial to the generation of nano-channels (NCs) pertinent
Miaosi Li et al.
Journal of colloid and interface science, 543, 164-173 (2019-02-26)
Microscopic droplets integrating multiple functionalities are essential in the microcompartmentalized related reaction and applications. Solvent exchange is a simple approach for producing femtoliter surface droplets by the transit oversaturation created at the mixing front of a solution by a poor
The Fabrication of Very Small Miniemulsion Latexes from N-Stearoylglutamate and Lauryl Methacrylate: Evidence for Droplet Budding
Yildiz U, et al.
Macromolecular Chemistry and Physics, 204(16), 1966-1970 (2003)
Hsiang-Yu Liu et al.
Talanta, 150, 233-239 (2016-02-04)
A poly(lauryl methacrylate-co-methacrylic acid-co-ethylene glycol dimethacrylate) [LMA-MAA-EDMA] monolithic column was used to simultaneously determine amphenicol antibiotics (chloramphenicol/CAP, thiamphenicol/TAP, and florfenicol/FF) in milk and honey samples by capillary liquid chromatography tandem mass spectrometry (LC-MS/MS). QuEChERS (quick, easy, cheap, effective, rugged, and
Shu-Ling Lin et al.
Talanta, 147, 199-206 (2015-11-26)
In this study, recently developed 1,6-hexanediol ethoxylate diacrylate (HEDA)-based polymeric monoliths were utilized as sorbents for efficient extraction of phenylurea herbicides (PUHs) from water samples. The HEDA-based monolithic sorbents were prepared in a fused silica capillary (0.7mm i.d., 4.5-cm long)
Sin Young Park et al.
Journal of separation science, 38(17), 2938-2944 (2015-06-23)
This study introduces a preparation method for polymer-encased monolith frits with improved durability for liquid chromatography columns. The inner surface of the polyether ether ketone tubing is pretreated with sulfuric acid in the presence of catalysts (vanadium oxide and sodium
Haiyang Zhang et al.
Journal of chromatography. A, 1440, 66-73 (2016-02-27)
A hybrid fluorous monolithic column was simply prepared via photo-initiated free radical polymerization of an acrylopropyl polyhedral oligomeric silsesquioxane (acryl-POSS) and a perfluorous monomer (2,2,3,3,4,4,5,5,6,6,7,7-dodecafluoroheptyl acrylate) in UV-transparent fused-silica capillaries within 5min. The physical characterization of hybrid fluorous monolith, including
Zacharoula Iatridi et al.
ACS applied materials & interfaces, 8(51), 35059-35070 (2016-12-15)
Adequately designed multiresponsive water-soluble graft copolymers were used to serve as a multifunctional polymeric platform for the encapsulation and transfer in aqueous media of hydrophobic magnetic nanoparticles (MNPs). The backbone of the graft copolymers was composed of hydrophilic sodium methacrylate
Rui Yang et al.
Analytical and bioanalytical chemistry, 407(3), 737-747 (2014-07-12)
Microfluidic systems with monolithic columns have been developed for preconcentration and on-chip labeling of model proteins. Monoliths were prepared in microchannels by photopolymerization, and their properties were optimized by varying the composition and concentration of the monomers to improve flow
Efficiency of ligands in atom transfer radical polymerization of lauryl methacrylate and block copolymerization with methyl methacrylate
Raghunadh VD, et al.
Polymer, 45(10), 3149-3155 (2004)
Dennis L Waldron et al.
Nanotechnology, 28(9), 095205-095205 (2017-01-07)
The results are presented for luminescent solar concentrators (LSCs) fabricated with poly(lauryl methacrylate-co-ethylene glycol dimethacrylate) (P(LMA-co-EGDMA)) and Angstrom Bond, Inc. AB9093 acrylic epoxy matrix, high quantum yield (> 70%) PbSe quantum dots (QDs) and silicon photovoltaic (Si PV) cells. LSCs
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