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分别采用高压有机溶剂法和回流法不同的制备方法,制备了含铂20%(w)的催化剂Pt/C-HP(高压有机溶剂法)和Pt/C-Reflux(回流法)。实验发现:对于甲醇的阳极氧化过程,高压有机溶胶法制得的催化剂活性较高,催化剂Pt/C-HP甲醇氧化峰电流密度是Pt/C-Reflux的1.5倍,且远远高于商业催化剂JM3000含铂20%(w)Pt/C催化剂,催化剂Pt/C-Reflux甲醇氧化峰电流密度与商业催化剂JM3000催化剂相当。采用X射线衍射(XRD)、透射电镜(TEM)、循环伏安法(CV)等方法对催化剂进行表征的结果表明:高压有机溶胶法制得的催化剂分散性比回流法制得的催化剂好,使得前者催化剂的电化学活性比表面积得到了显著的提高。  相似文献   
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A synthesized cyclometalated palladium-azo complex was explored as a multifunctional probe for visual detection of SO2, H2S and NH3 in water. In acidic aqueous environment, the sensing solution underwent a sharp color change from poor violet to deep blue when titrated with Na2SO3 standard solution. But the color changed from poor violet to bright yellow when titrated with Na2S standard solution. In basic environment, the sensing solution rapidly changed to magenta when titrated by NH4Cl-NH3 standard buffer solution at high concentration. However, the color of sensing solution changed to blue when titrated by NH4Cl-NH3 standard buffer solution at low concentration although the pH was kept constant during the titration. Different species of these hazardous gases at environmentally relevant concentration levels were differentiated by independent optical signal outputs, and the interference from other inorganic ions commonly existing in water was very small.  相似文献   
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本文设计合成了四核环金属化钯-偶氮配合物(MOP)作为有机磷农药的分辨性光学分子探针, 应用于硫磷类农药组分的分辨性光谱识别.  相似文献   
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以硝酸镍和正硅酸乙酯为主要原料,采用前驱物水热法制得不同镍含量的纳米Ni(0H)2/SiO2复合粉体,用复合粉体做催化剂催化裂解C2H2制得多壁碳纳米管粗产物。研究表明:在复合粉体Ni(OH)2/SiO2催化剂中,硅镍比在一定范围内(1:2~1:14),随着镍含量增加,粒径增大,结晶程度提高,催化剂活性先提高后下降,制得的碳纳米管纯度及产量先增后降,碳管的管径分布范围先窄后宽。催化剂硅镍比为1:12时,制得的碳纳米管纯度高,管径细而均匀(10~18nm),且粗产物数量较多(1g催化剂合成3.3g碳纳米管粗产物)。  相似文献   
5.
荧光团杂化纳米SiO2微球作为生物标记探针的应用研究   总被引:4,自引:0,他引:4  
近年来 ,无机发光量子点[1,2 ] 、荧光纳米乳液微球[3 ,4 ] 及发光团掺杂 Si O2 纳米粒子[5] 等纳米荧光探针的出现 ,为生物标记提供了新的发展领域 .将有机染料以共价方式包埋在 Si O2 中所得的复合材料具有独特的光学性质 ,然而其在生物标记方面的应用并未得到重视[6 ,7] .本实验通过控制荧光团修饰的硅烷前体在反相胶束体系中的水解缩合 ,合成了用于生物染色和诊断的高灵敏度、高稳定性的新型荧光团杂化纳米 Si O2 微球 ( NFHS微球 ) .在 NFHS微球中 ,荧光团以共价方式地均匀分散在 Si O2 网络结构中 ,避免了与外界体系中溶解氧的…  相似文献   
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The fluorescence behavior of two near-infrared (NIR) chromophores with linear alkyl chains of different lengths, 2-[4′chloro-7′(3″ethyl-2″benzothiaolinylidene)-3′,5′-(1″′3′″-propanediyl)-1′3′,5′-heptantriene-1′-yL]-3-ethylbenzothiazolium iodide (Probe Ⅰ) and 2-[4′chloro-7′(3″hexadecyl-2″benzothiazolinylidene)-3′,5′-(1′″,3′″-propanediyl)-1′,3′,5′-heptantriene-1′-yl]-3-ethylbenzothiazolium iodide (Probe Ⅱ), in aqueous solution containing different concentrations of surfactants was studied. The fluorescence of the probe with a short chain (probe Ⅰ) was completely quenched in water and aqueous solution containing a low concentration (below the critical micelle concentration,CMC) of surfactant Triton X-100. However, the fluorescence reappeared and reached maximum rapidly once the concentration of the surfactant approached the CMC. The probe with a long chain (probe II) displayed a similar fluorescence behavior but more dramatically fluorescent recovery in Triton X-100 system, which gave a direct in- dication for the micelle forming process and provided a simple method for the determination of the critical micelle concentration of the surfactant. The CMC values determined by this method were in good agreement with those obtained by other techniques. The fluorescence behavior of the two probes in other surfactant systems was also investigated.  相似文献   
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