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排序方式: 共有22条查询结果,搜索用时 15 毫秒
1.
采用硅烷化改性NH3选择性催化还原NOx催化剂CuCe/BEA,以提高催化剂的水热稳定性。X射线衍射、扫描电子显微镜和27Al核磁共振谱图等研究证实,硅烷化改性明显抑制BEA分子筛骨架中Si-O-Al键的水解,保持其结构完整,从而有效提高水热处理后CuCe/BEA的催化活性。氨气-程序升温脱附和原位漫反射傅里叶变换红外光谱研究结果表明,硅烷化改性的催化剂由于保持更完整的骨架结构能够形成更多的酸性位点。此外,氢气-程序升温还原和X射线光电子能谱测试表明,硅烷化改性有利于提高活性铜物种的分散性。因此,相比于CuCe/BEA催化剂,硅烷化改性的CuCeSi/BEA催化剂具有更多的酸性位点和高度分散的Cu物种,共同促进了催化剂的水热稳定性。  相似文献   
2.
The paper describes the first use of silanized semiconductor core-shell quantum dots as fluorescent labels for macromolecule, C-reactive protein determination in blood plasma. The controlled synthesis of CdSe cores, with successive shells of CdS, CdZnS, ZnS and coating with transparent, stable, and inert silica shell, provides quantum dots with a narrow emission band, high quantum yield, and prolonged signal stability. Finally, the quantum dots were conjugated with specific antibodies via carboxylic groups on the silica surface. The method was further used for the immunochromatographic assay of C-reactive protein, a diagnostically important inflammatory biomarker. Assays with both the fluorescent QDs and a widely used colloidal gold label were developed in parallel and compared. The silanized quantum dots provide a more sensitive assay with a detection limit of 1?ng/mL for C-reactive protein in standard solutions, whereas the common assay has a detection limit of 10?ng/mL. The possibility of quantitative evaluation of analyte content by a portable device was demonstrated; the accuracy of the measurements was in the range of 5%–10%. The tests were used to determine C-reactive proteins in human plasma samples. The selected optimized protocol for these samples is based on a 4-fold dilution. The final working range of the assay, 4–1,200?ng/mL, covers practically all important interval of C-reactive protein values for the characterization of acute, chronic, and local inflammatory processes. Due to their high physical stability and inertness as well as intense, stable, and reproducible fluorescence, silanized quantum dots may be applied for high-sensitive assays for different analytes.  相似文献   
3.
采用硅烷化衍生化法结合气相色谱-质谱(GC-MS)法对卷烟烟丝中的主要化学成分进行检测,获得了21个卷烟样品的烟丝硅烷化GC-MS指纹图谱数据,并应用聚类分析和主成分分析法对烟丝硅烷化GC-MS指纹图谱数据进行综合评价。结果表明,该方法可用于不同品牌卷烟的比较和区分,硅烷化成分的含量分布特征能反映不同品牌卷烟的特性,可为卷烟品牌的风格表征、品质维护和真伪鉴别提供参考。  相似文献   
4.
以三甲基氯硅烷为硅烷化试剂,对硅胶进行不同程度硅烷化预处理,采用浸渍法制备了其负载的Rh-Mn-Li催化剂,用于CO加氢制C2含氧化合物的反应,并运用红外光谱、N2吸附-脱附法、C含量测定、透射电镜、H2程序升温还原和程序升温表面反应等手段对载体和催化剂进行了表征。结果表明,制得的不同硅烷化程度硅胶织构性质变化不大,它们负载的催化剂上Rh平均粒径均在3nm左右,硅烷化对催化剂吸附CO的形态和Rh的还原性能的影响均很小,但随着载体硅烷化程度的提高,催化剂上Rh解离CO的能力增加,因而其活性逐渐增加,且不影响C2含氧化合物的选择性。  相似文献   
5.
Epoxy nanocomposites with unmodified multiwalled carbon nanotubes (u-MWCNTs) and silanized multiwalled carbon nanotubes (si-MWCNTs) were prepared by a cast molding method. The effects of 3-aminopropyltriethoxysilane functionalization of MWCNTs on thermal, tensile, and morphological properties of the nanocomposites were examined. The nanocomposites were characterized by thermogravimetric analysis, dynamic mechanical thermal analysis, and tensile testing. The results showed that epoxy composites based on si-MWCNTs showed better thermal stability, glass transition temperature, and tensile properties than the composites based on u-MWCNTs. These results prove the effect of silane functionalization on the interfacial adhesion between epoxy and MWCNTs. This was further confirmed by morphology study of fractured surfaces of nanocomposites by field emission scanning electron microscopy.  相似文献   
6.
 利用X射线衍射、N2物理吸附与NH3-程序升温脱附等手段以及异辛烷加氢裂化探针反应研究了硅烷化处理对Pt/SAPO-11催化剂结构和酸性的影响, 并考察了催化剂对正十二烷临氢异构化反应的催化性能. 结果表明,硅烷化处理有效清除了样品外表面的酸性位,减少了发生在外表面的非选择性裂化反应. 硅烷化处理后,催化剂对单支链异构体的选择性明显提高,尤其对单支链端甲基异构体的选择性显著提高,但催化剂的总体异构化选择性有所降低. 硅烷化处理可能造成催化剂的孔口窄化,从而提高单支链异构体的选择性,但同时也导致其微孔孔道内裂化反应的增多.  相似文献   
7.
孙磊  晏菲  周璘  苏彬 《分析测试学报》2018,37(10):1182-1191
氧化铟锡(ITO)薄膜电极具有良好的物理(导电性高、透光性好)和化学性能,对其表面进行修饰可进一步拓展其在电分析化学中的应用。该文根据目前的研究现状,简要介绍了ITO薄膜电极的制备和清洗方法,总结了ITO薄膜电极的表面修饰方法,着重介绍了应用较多的化学吸附、硅烷化、电化学接枝3类方法,并简要评述了ITO薄膜电极表面修饰方法面临的挑战及应用前景。  相似文献   
8.
《Composite Interfaces》2013,20(2):141-151
Ultra-high modulus polyethylene (UHMPE) fibres have been treated using a novel 'non-plasma' treatment allowing the incorporation of various chemical functional groups onto the polymer surface. The process comprises two steps: corona discharge treatment, followed by silanization of the polymer surface by a solution of an organo-functional silane. Corona discharge treatment incorporates oxygen-containing functionalities, e.g. reactive hydroxyl groups, onto the polymer surface. The presence of reactive -OH groups provides the possibility of covalent linkage of any organo-functional silane to the corona discharge-treated polymer in the form of a fibre, film, sheet, or powder. The effectiveness of the process was assessed by examining the interlaminar fracture energy and flexural modulus and by SEM analysis of the fracture surfaces of composites fabricated from the untreated, corona discharge-treated, ammonia plasma-treated, and the amine-grafted (using the novel process) UHMPE fabric. A significant improvement in interfacial adhesion was confirmed by increases in the interlaminar fracture energies and flexural moduli. The effectiveness of the process investigated is similar to the ammonia plasma treatment. SEM analysis of the fracture surfaces indicated a change in the fracture mode from purely adhesive for unmodified fibres, through to mixed failure mode for corona-treated material, to highly cohesive-in-fibre surface for amine-grafted UHMPE fibres. XPS analysis confirmed the incorporation of the amine groups onto the surface of polyethylene treated using the novel method.  相似文献   
9.
 Silica hydride is a recent development in chromatographic support materials for high performance liquid chromatography (HPLC) where hydride groups replace 95% of the silanols on the surface. This conversion changes many of the fundamental properties of the material as well as the bonded stationary phases that are the result of further chemical modification of the hydride surface. Some unique chromatographic properties of hydride-based phases are described as well as some general application areas where these bonded materials may be used in preference to or have advantages not available from typical stationary phases. The fabrication, properties and applications of etched chemically modified capillaries for electrophoretic analysis are also reviewed. It is shown that the etching process creates a surface that is fundamentally different than a bare fused silica capillary. The new surface matrix produces unique electroosmotic flow properties and is more compatible with basic and biological compounds. After chemical modification of the surface, the bonded organic moiety (stationary phase) contributes to the control of migration of solutes in the capillary. Both electrophoretic and chromatographic processes take place in the etched chemically modified capillaries leading to a variety of experimental variables that can be used to optimize separations. A number of examples of separations on these capillaries are described.  相似文献   
10.
Summary A wide-pore silica for HPLC with a particle size of 7.5 m, specific surface area of 360m2/g, pore diameter of 20 nm and pore volume of 2.1 cm3/g was silanized with n-octadecyldimethyl-chlorosilane (ODMCS), n-octadecyldimethylmetoxysilane (ODMMS) and n-octadecyldimethyl-dimethylaminosilane (ODMAS), in sealed glass ampoules. The ligand density obtained with an excess of ODMCS and ODMMS was found to be limited by reaction equilibrium; at low (<50%) conversion of the surface silanols, the reaction displays pseudo-first-order kinetics. Silanization with ODMAS, which seems to be sterically controlled at higher conversions, yields a relatively high concentration of bonded octadecyl ligands (4.24mol/m2).Present adress: Department of Chemical Physics, Institute of Chemistry, Maria Curie-Sktodowska University, Pl-20 031 Lublin, Poland.  相似文献   
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