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Bimetallic core-shell Ag@Pt nanoparticle-decorated MWNT electrodes for amperometric H_2 sensors and direct methanol fuel cells

机译:双金属核壳Ag @ Pt纳米粒子修饰的MWNT电极,用于安培H_2传感器和直接甲醇燃料电池

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Bimetallic core-shell Ag@Pt nanoparticles (NPs) attached on multiwall carbon nanotube (Ag@Pt-MWNT) were synthesized via the formation of Ag NPs on a MWNT surface through chemical reduction and subsequent galvanic replacement of Ag with PtCL_6~(2-). The successful synthesis of Ag@Pt-MWNT was confirmed by probing chemical compositions, absorption, and microstructures using various material analysis methods (UV-vis, SEM, EDS. and TEM). The bimetallic particles were found to have a core-shell structure in the TEM image: an Ag core with an average size of approximately 7 nm was enclosed by a shell composed of small Pt NPs. The electrochemical surface area of the Ag@Pt-MWNT-modified glassy carbon electrode was 896 cm~2/mg, which was 1.5 times higher than that of commercial 20 wt% Pt-C (E-Tek). The Ag@Pt-MWNTs electrode also exhibited a higher peak current for methanol oxidation than those of comparable Pt-MWNT and Pt-C under the same amount of Pt loading, thus providing evidence for its higher electro-catalytic activity and CO tolerance. Furthermore, an amperometric gas-sensing electrode was fabricated by filtering an Ag@Pt-MWNT solution on a porous PTFE sheet. The as-fabricated electrode displayed a high sensitivity of 1.1 μA/ppm in H_2 detection and an excellent linear response over the wide concentration range of 5-1000 ppm, together with fairly good detection times and long-term stability. This enhanced performance was correlated and discussed to be a result of the unique nanostructural features of the Ag@Pt core-shell structure with a porous Pt layer and the strong anchoring of the bimetallic NPs on the activated MWNT surface, which provides a highly active surface area and effective interactions between Ag and Pt.
机译:通过化学还原并随后用PtCL_6〜(2-)置换Ag,在多壁碳纳米管(Ag @ Pt-MWNT)上形成双金属核壳Ag @ Pt纳米粒子(NPs),从而在MWNT表面形成银纳米粒子。 )。通过使用各种材料分析方法(UV-vis,SEM,EDS和TEM)探查化学成分,吸收和微结构,证实了Ag @ Pt-MWNT的成功合成。发现双金属粒子在TEM图像中具有核-壳结构:平均大小约为7 nm的Ag核被由小Pt NP组成的壳包围。 Ag @ Pt-MWNT修饰的玻碳电极的电化学表面积为896 cm〜2 / mg,是市售20 wt%Pt-C(E-Tek)的1.5倍。在相同的Pt负载量下,Ag @ Pt-MWNTs电极也显示出比可比的Pt-MWNT和Pt-C更高的甲醇氧化峰值电流,因此提供了其较高的电催化活性和CO耐受性的证据。此外,通过在多孔PTFE片上过滤Ag @ Pt-MWNT溶液来制造电流型气敏电极。所制造的电极在H_2检测中显示出1.1μA/ ppm的高灵敏度,并在5-1000 ppm的宽浓度范围内表现出出色的线性响应,同时具有相当好的检测时间和长期稳定性。关联并讨论了这种增强的性能,这是由于具有多孔Pt层的Ag @ Pt核壳结构的独特纳米结构特征以及双金属NP在活化的MWNT表面上的牢固锚固而提供的,从而提供了高活性的表面面积和银与铂之间的有效相互作用。

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