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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Electrocatalytic reduction of nitrite at a carbon fiber microelectrode chemically modified by palladium(II)-substituted Dawson type heptadecatungstodiphosphate
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Electrocatalytic reduction of nitrite at a carbon fiber microelectrode chemically modified by palladium(II)-substituted Dawson type heptadecatungstodiphosphate

机译:在钯(II)取代的道森型庚二茂铁二磷酸盐化学修饰的碳纤维微电极上对亚硝酸盐的电催化还原

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A new type of chemically modified electrode (CME) was fabricated by electrodeposition of palladium(II)-substituted Dawson type heptadecatungstodiphosphate, K_8[P_2W_(17)O_(61)Pd(H_2O)] (abbreviated as P_2W_(17)Pd in the following), onto a carbon fiber microelectrode (CFME). A pair of waves was observed on the P_2W_(17)Pd CFME, which is ascribed to the redox process of the palladium center in the heteropolytungstate. After continuous potential scanning for 30 min in a pH 4.0 buffer, 92% of the original electrode response remained for the P_2W_(17)Pd CFME. The P_2W~(17)Pd CFME had high electrocatalytic activity for nitrite reduction and exhibited good reproducibility and stability. The catalytic peak current was found to be linear with the nitrite concentration in the range of 1.0 * 10~(_7) approx 1.2 * 10~(-3) mol l~(-1) (at 25 deg C) with a correlation coefficient of 0.9886. The detection limit (signaloise = 3) was found to be 2.0 * 10~(-8) mol l~(-1). The response time of the microsensor for nitrite measurement was less than 15 s. For 10 parallel measurements of 1.0 * 10~(-5) mol l~(-1) nitrite, the relative standard deviation (RSD) was found to be 4.5%. The sensitivity of the microsensor was 0.57 nA (#mu#mol l~(-1))~(-1). The P_2W_(17)Pd CME was applied successfully as an electrochemical detector (ECD) to determine the nitrite level in rat brain by flow injection analysis (FIA) coupled with microdialysis sampling. The linear range was over three orders of magnitude and the detection limit was 3.0 pmol for nitrite determination. The mechanism of the catalytic reaction was also addressed.
机译:通过电沉积钯(II)取代的道森型七六十二碳准二钨硬基二磷酸钾(K_8 [P_2W_(17)O_(61)Pd(H_2O)](缩写为P_2W_(17)Pd)来制备新型化学修饰电极然后将其连接到碳纤维微电极(CFME)上。在P_2W_(17)Pd CFME上观察到一对波,这归因于杂多钨酸盐中钯中心的氧化还原过程。在pH 4.0缓冲液中连续电势扫描30分钟后,对于P_2W_(17)Pd CFME,仍保留原始电极响应的92%。 P_2W〜(17)Pd CFME对亚硝酸盐还原具有较高的电催化活性,并具有良好的重现性和稳定性。发现催化峰值电流与亚硝酸盐浓度在1.0 * 10〜(_7)约1.2 * 10〜(-3)mol l〜(-1)(在25摄氏度)范围内呈线性关系为0.9886。检出限(信号/噪声= 3)为2.0 * 10〜(-8)mol l〜(-1)。用于亚硝酸盐测量的微传感器的响应时间小于15 s。对亚硝酸盐1.0 * 10〜(-5)mol l〜(-1)进行10次平行测量,发现相对标准偏差(RSD)为4.5%。微传感器的灵敏度为0.57 nA(#mu#mol l〜(-1))〜(-1)。 P_2W_(17)Pd CME成功地用作电化学检测器(ECD),通过流动注射分析(FIA)结合微透析采样来确定大鼠脑中的亚硝酸盐水平。线性范围超过三个数量级,亚硝酸根测定的检出限为3.0 pmol。还探讨了催化反应的机理。

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