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The Electrochemical Characterization of Electrochemically Synthesized MnO_2-based Mixed Oxides for Supercapacitor Applications

机译:超级电容器应用的电化学合成MNO_2基混合氧化物的电化学表征

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Nanostructured elements, including: manganese-molybdenum (Mn-Mo) oxide, manganese-molybdenum-tungsten (Mn-Mo-W) oxide, manganese-molybdenum-iron (Mn-Mo-Fe) oxide, manganese-molybdenum-cobalt (Mn-Mo-Co) oxide, manganese-vanadium-tungsten (Mn-V-W) oxide, manganese-vanadium-iron (Mn-V-Fe) oxide and manganese-iron (Mn-Fe) oxide, have been anodically deposited onto titanium substrates by employing an iridium dioxide interlayer (Ti/IrO_2 anode). The electrochemical characteristics of the resultant oxide deposits have been investigated by cyclic voltammetry (CV) in an aqueous 0.1 M Na_2SO_4 solution. The voltammetric behaviors of the oxide deposits observed are significantly influenced by the doped elements. Molybdenum doping is found to be advantageous at improving the capacitance characteristics of anodically deposited manganese oxide. Comparatively, iron and vanadium doping are found to be unfavorable. The structure and crystallinity of these deposits have been identified by X-ray diffraction (XRD). The surface morphologies of these oxides were acquired from field emission scanning electron microscopes (FESEM). The high values of electrical parameters for the doped deposits are attributed to the net-like and sponge-like nanostructure, and low crystallinity of the doped manganese oxides. The deposit of Mn-Mo oxides exhibits an excellent capacitive-like behavior, possessing the maximum specific capacitance of 810 F g~(-1) at a CV scan rate of 5 mV s~(-1) in aqueous 0.1 M Na_2SO_4 solution.
机译:纳米结构元件,包括:锰 - 钼(Mn-Mo)氧化物,锰 - 钼 - 钨(Mn-Mo-W)氧化物,锰 - 钼 - 铁(Mn-Mo-Fe)氧化物,锰 - 钼 - 钴(Mn -mo-co)氧化物,锰 - 钒 - 钨(Mn-vW)氧化物,锰 - 钒 - 铁(Mn-V-Fe)氧化物和锰 - 铁(Mn-Fe)氧化物,已被阳极沉积在钛基材上通过采用二氧化铱性层(Ti / IRO_2阳极)。通过环状伏安法(CV)在0.1M Na_2SO_4溶液中研究了所得氧化物沉积物的电化学特性。观察到的氧化物沉积物的伏安行为受掺杂元素的显着影响。发现钼掺杂是有利的,改善阳极沉积的氧化锰的电容特性。相比之下,发现铁和钒掺杂是不利的。通过X射线衍射(XRD)鉴定了这些沉积物的结构和结晶度。从场发射扫描电子显微镜(FESEM)中获取这些氧化物的表面形态。用于掺杂沉积物的电参数的高值归因于掺杂锰氧化物的网状和海绵状纳米结构,以及低结晶度。 Mn-Mo氧化物的沉积性具有优异的电容性等行为,在0.1M Na_2SO_4溶液中以5mV S〜(-1)的CV扫描速率具有810f g〜(-1)的最大特异性电容。

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