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首页> 外文期刊>CERAMICS INTERNATIONAL >Highly efficient bio-based porous carbon hybridized with tungsten carbide as counter electrode for dye-sensitized solar cell
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Highly efficient bio-based porous carbon hybridized with tungsten carbide as counter electrode for dye-sensitized solar cell

机译:用碳化钨作为染料敏化太阳能电池的对电极杂交的高效生物基多孔碳杂交

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摘要

Bio-based porous carbon (C-MA and C-TA) are successfully prepared from waste carton via microwave-assisted activation (MA) and two-step chemical activation (TA) methods, respectively. The as-prepared C-TA sample exhibits higher specific surface area (824.16 m(2) g(-1)) and larger total pore volume (0.71 cm(3) g(-1)), as compared with those of the C-MA sample (655.36 m(2) g(-1) and 0.62 cm(3) g(-1), correspondingly). The higher specific surface area could provide more catalytic sites; thus, the dye-sensitized solar cell (DSSC) assembled with a C-TA counter electrode (CE) deliver a power conversion efficiency (PCE) of 6.76%, surpass the C-MA-based DSSC (6.19%). Further, tungsten carbide (WC) are introduced into C-TA and C-MA to form hybrid catalysts (WC/C-TA and WC/C-MA, respectively) in order to improve their catalytic activities. Benefitting from the synergistic effect of bio-based porous carbon and WC, the DSSCs with WC/C-TA and WC/C-MA CEs exhibit superior PCE values of 7.32% and 6.85%, respectively, close to Pt (7.51%). This work provides an effective strategy for synthesizing low-cost and high-performance hybrid catalysts from bio-based carbon to achieve resource utilization of biomass waste in new energy fields.
机译:通过微波辅助活化(MA)和两步化学活化(TA)方法,成功制备了生物基多孔碳(C-MA和C-TA)。与C的C相比,如制备的C-TA样品表现出更高的比表面积(824.16μm(2)g(-1))和更大的总孔体积(0.71cm(3 )g(-1)) -MA样品(655.36m(2)g(-1)和0.62cm(3)g(-1)相应地)。较高的表面积可以提供更多的催化位点;因此,用C-Ta对电极(CE)组装的染料敏化太阳能电池(DSSC)输送了6.76%的功率转换效率(PCE),超越C-MA基DSSC(6.19%)。此外,将碳化钨(WC)引入C-TA和C-MA中以形成杂化催化剂(分别为杂交催化剂(WC / C-TA和WC / C-MA)以改善其催化活性。益于生物基多孔碳和WC的协同作用,具有WC / C-TA和WC / C-MA CES的DSSCs分别具有7.32%和6.85%的优越PCE值,接近Pt(7.51%)。该作品提供了合成从生物基碳的低成本和高性能杂交催化剂的有效策略,以实现新能源领域的生物质废物的资源利用。

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