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Earth Abundant Silicon Composites as the Electrocatalytic Counter Electrodes for Dye-Sensitized Solar Cells

机译:稀土丰富的硅复合材料作为染料敏化太阳能电池的电催化对电极

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摘要

Earth abundant silicon compounds, including Si3N4, SiO2, SiS2, and SiSe2, were introduced as the electrocatalytic materials for the counter electrodes (CE) in dye-sensitized solar cells (DSSCs). Among these silicon-based materials, Si3N4, SiS2, and SiSe2 were applied in DSSCs for the first time. In the presence of a conducting binder, poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS), various silicon-based composites (Si3N4/PEDOT:PSS, SiO2/PEDOT:PSS, SiS2/PEDOT:PSS, and SiSe2/PEDOT:PSS) were successfully coated on the ITO substrates via a simple drop-coating process. In a composite film, silicon based nanoparticles provided attractive electrocatalytic ability and plenty of electrocatalytic active sites for the triiodine ion (I-3(-)) reduction. PEDOT:PSS not only acted as a good conducting binder for silicon-based nanoparticles, but also provided a continuous polymer matrix to increase the electron transfer pathways. By adjusting the weight percent (1-5 wt %) of the silicon-based nanoparticles (Si3N4, SiO2, SiS2, and SiSe2) with respect to the weight of PEDOT:PSS, the composite films containing 5 wt % Si3N4 (denoted as Si3N4-5) and 5 wt % SiSe2 (denoted as SiSe2: 5) both reached excellent electrocatalytic abilities and rendered the good cell efficiencies (eta) of 8.2% to their DSSCs. It can be said that both Si3N4-5 and SiSe2-.5 are promising electrocatalytic materials to replace the rare and expensive Pt (eta = 8.5%).
机译:包括Si3N4,SiO2,SiS2和SiSe2在内的地球上富含硅的化合物被用作染料敏化太阳能电池(DSSC)中对电极(CE)的电催化材料。在这些硅基材料中,Si3N4,SiS2和SiSe2首次应用于DSSC。在导电粘合剂,聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)存在下,各种硅基复合材料(Si3N4 / PEDOT:PSS,SiO2 / PEDOT:PSS,SiS2 / PEDOT:PSS通过简单的滴涂工艺成功地在ITO基板上涂覆了SiSe2 / PEDOT:PSS和SiSe2 / PEDOT:PSS)。在复合膜中,硅基纳米颗粒提供了有吸引力的电催化能力和大量的三碘离子(I-3(-))还原电催化活性位。 PEDOT:PSS不仅是硅基纳米颗粒的良好导电粘合剂,而且还提供了连续的聚合物基体以增加电子转移途径。通过相对于PEDOT:PSS的重量调整硅基纳米颗粒(Si3N4,SiO2,SiS2和SiSe2)的重量百分比(1-5重量%),该复合膜包含5 wt%的Si3N4(表示为Si3N4) -5)和5 wt%的SiSe2(表示为SiSe2:5)均达到了出色的电催化能力,并为其DSSC提供了8.2%的良好电池效率(η)。可以说,Si3N4-5和SiSe2-.5都是有希望的电催化材料,可替代稀有且昂贵的Pt(η= 8.5%)。

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