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Solid-state Synthesis of Ni Decorated Needle Coke as Lowcost Pt-free Counter Electrode for Efficient Dye-sensitized Solar Cells

机译:Ni装饰的针头可乐的固态合成为低成本的无PT反电极,以有效染料敏化的太阳能电池

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摘要

To seek a Pt-free carbon material counter electrode for dyesensitized solar cells (DSSCs), the electrocatalytic activity of needle coke (NC) for the reduction of triiodide in DSSCs was investigated, and further improved by decorating with Ni to prepare Ni decorated needle coke (Ni-NC) via a one-step solidstate synthesis method. It is found that the NC is a potential carbon counter electrode material for DSSCs due to its highdensity anisotropy with considerable conductivity. Although the decoration of Ni may sacrifice certain conductivity of NC, the electrocatalytic activity of Ni-NC towards reduction of triiodide was better than that of NC. To obtain a balanced point of conductivity and electrocatalytic performance for Ni-NC, the loading amount of Ni together with the solid-state synthesis conditions were also studied. It is indicated that these parameters also have some effect on the performance of Ni-NC. Under the optimized conditions, the DSSCs based on Ni-NC counter electrode achieve an 77% higher energy conversion efficiency of 4.39% than that of NC counter electrode (2.48 %), and comparable to the value (5.34%) obtains with Pt counter electrode. It is an efficient way to improve the performance of NC by decorating with Ni via a facile solid-state synthesis method, and promote the application of needle coke as carbon counter electrode materials in DSSCs.
机译:为了寻求无PT的碳材料反电极以进行染色敏化太阳能电池(DSSC),研究了针头可口可乐(NC)的电催化活性,以还原DSSC中的三碘化物,并通过装饰Ni来进一步改进(Ni-nc)通过一步固态合成方法。发现NC是DSSC的潜在碳反电极材料,因为其高密度各向异性具有相当大的电导率。尽管Ni的装饰可能会牺牲NC的某些电导率,但Ni-NC对三碘化物还原的电催化活性优于NC。为了获得Ni-NC的电导率和电催化性能的平衡点,还研究了Ni的加载量与固态合成条件。据表明,这些参数也会对Ni-NC的性能产生一定影响。在优化条件下,基于Ni-NC反电极的DSSCS比NC计数器电极(2.48%)的能量转换效率高出77%,可与PT计数器电极获得的值(5.34%)相当。这是一种通过轻松的固态合成方法用NI进行装饰,并促进针头可乐作为DSSC中的碳反电极材料的应用,以提高NC的性能。

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