首页> 外文期刊>International Journal of Photoenergy >Fabrication and Electrochemical Behavior Investigation of a Pt-Loaded Reduced Graphene Oxide Composite (Pt@rGO) as a High-Performance Cathode for Dye-Sensitized Solar Cells
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Fabrication and Electrochemical Behavior Investigation of a Pt-Loaded Reduced Graphene Oxide Composite (Pt@rGO) as a High-Performance Cathode for Dye-Sensitized Solar Cells

机译:用于染料敏化太阳能电池的高性能阴极的Pt加载的石墨烯氧化物复合物(Pt @ Rgo)的制备和电化学性能研究

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A platinum-reduced graphene oxide thin film composite (Pt@rGO, 100?nm) was prepared on a fluorine-doped tin oxide- (FTO-) coated glass substrate by a screen printing method using a Pt@rGO screen printing paste (0.12% Pt; Pt/rGO=1.5?w/w). The as-prepared electrode (denoted as Pt@rGO/FTO) was used as the cathode for the assembly of dye-sensitized solar cells (DSSCs). It showed a well-dispersed and high loading of Pt on rGO surface with a particle size distributed around 10?nm. The redox behavior of ferrocene was performed at Pt/FTO, Pt@rGO/FTO, and rGO/FTO electrodes by a cyclic voltammetry (CV) method. The kinetic parameters, in particular, the standard reduction potential (E0, V), the transfer coefficient (α), the heterogeneous rate constant (k0, cm·s-1), and the diffusion coefficient (D, cm2 s-1), were determined by CV data treatment using convolution-deconvolution and fitting methods. The values of E0, α, k0, and D at Pt@rGO/FTO electrode were, respectively, 326?mV, 0.471, 3.33?cm·s-1, and 4.19?cm2·s-1, equivalent to those of Pt/FTO electrode (340?mV, 0.474, 3.18?cm·s-1, and 4.19?cm2·s-1). The Pt@rGO/FTO electrode exhibited excellent electrocatalytic activity compared to that of Pt thin film (Pt/FTO electrode) prepared from Pt commercial paste. The heterogeneous electron transfer rate constant k0 (cm·s-1) for I3-/I- at Pt@rGO/FTO is 1.3 times faster than that at Pt/FTO. The energy conversion efficiency of the DSSCs assembled from Pt@rGO-DSSC cathode reached 7.0%, an increase of 20.7% over the commercial Pt-based cathode (Pt-DSSC, 5.8%). The rGO component in the Pt@rGO composite plays two important roles: (i) facilitating the electron transfer between Pt NPs catalyst and the FTO substrate via the bandgap effect and (ii) the enlargement catalytic surface area of Pt NPs via the loading effect. The rGO material has, therefore, potential to replace the Pt content and improve the performance of the DSSC device.
机译:使用Pt @ Rgo丝网印刷浆料通过丝网印刷方法在氟掺杂的氧化锡(FTO)涂覆的玻璃基板上制备铂还原的石墨烯氧化物薄膜复合膜复合膜复合膜(Pt @ Rgo,100·Nm)(0.12 %pt; pt / rgo = 1.5?w / w)。用作染料敏化太阳能电池(DSSCs)组装的作为制备的电极(表示为Pt @ rgo / FTO)作为阴极。它在RGO表面上显示出良好的分散和高负荷的PT,粒度分布在10Ω·Nm。通过循环伏安法(CV)方法在Pt / FTO,Pt @ Rgo / FTO和Rgo / FTO电极上进行二茂的氧化还原行为。特别是标准降低电位(E0,V),转移系数(α),异构速率常数(K0,CM·S-1)和扩散系数(D,CM2 S-1)的动力学参数,通过使用卷积 - 去卷积和配合方法的CV数据处理确定。 Pt / FTO / FTO电极的E0,α,k0和d的值分别为326Ωmv,0.471,3.33Ωcm·s-1和4.19?cm 2·s-1,相当于pt / FTO电极(340?mV,0.474,31.18?CM·S-1和4.19?CM2·S-1)。与由Pt商业浆料制备的Pt薄膜(Pt / FTO电极)相比,Pt @ rgo / FTO电极表现出优异的电催化活性。对于I3-/ I-在PT / FTO时的异质电子传递速率常数K0(CM·S-1)比Pt / FTO在Pt / FTO上的1.3倍。从Pt @ rgo-dssc阴极组装的DSSC的能量转换效率达到7.0%,占商业PT基阴极(Pt-DSSC,5.8%)增加20.7%。 PT @ Rgo复合材料中的RGO组分起两个重要的作用:(i)通过带隙效应和(ii)通过装载效果的增大催化表面积和(ii)Pt NPS催化剂和FTO基底之间的电子传递。因此,RGO材料具有替代PT含量的潜力,提高DSSC器件的性能。

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