首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Ag@Nb2O5 plasmonic blocking layer for higher efficiency dye-sensitized solar cells
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Ag@Nb2O5 plasmonic blocking layer for higher efficiency dye-sensitized solar cells

机译:AG @ NB2O5等效染料敏化太阳能电池的等离子体阻塞层

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摘要

Engineering photons on a nanoscale via guidance and localization by metal nanostructures has a profound influence on the performance of devices that try to mimic the process of photosynthesis. The conventional route for the synthesis of plasmonic nanoparticles and their integration into the porous structure of the photoanode either directly or after being capped with a dielectric material not only adds to the complexity but also to the cost of the cell. The present study introduces the concept of a plasmonic blocking layer that concurrently acts as a light harvester and an electron-blocking layer in a dye-sensitized solar cell (DSSC), wherein the plasmonic silver nanoparticles are incorporated into an Nb2O5 blocking layer by a simple one-step process. The cell with the plasmonic blocking layer achieves an efficiency of 9.24% when compared with a cell with a non-plasmonic blocking layer (7.6%), registering an impressive enhancement in the efficiency by 22%. Moreover, the cell with the plasmonic blocking layer shows an improvement in the efficiency by 49% when compared with the cell without a blocking layer (6.19%).
机译:金属纳米结构的指导和定位在纳米级上的工程光子对试图模仿光合作用过程的装置的性能产生了深远的影响。用于合成等离子体纳米颗粒的常规途径及其直接或在用介电材料封盖的光电码的多孔结构中不仅增加了复杂性,而且还增加了细胞的成本。本研究介绍了等离子体阻挡层的概念,其同时用作染料敏化太阳能电池(DSSC)中的光收割机和电子阻挡层,其中,通过简单的方式将等离子体银纳米颗粒掺入Nb2O5阻挡层中。一步过程。与具有非等离子体阻塞层(7.6%)的电池相比,具有等离子体阻塞层的电池达到9.24%的效率,以效率的效率令人印象深刻的增强。此外,与没有阻挡层的电池相比,具有等离子体阻断层的电池显示出效率的提高49%(6.19%)。

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