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FABRICATION OF EFFICIENT ELECTRODES FOR DYE-SENSITIZED SOLAR CELLS USING ADDITIVE MANUFACTURING

机译:使用添加剂制造制造染料敏化太阳能电池的高效电极

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Dye-Sensitized Solar Cells (DSSC) are third generation solar cells used as an alternative to c-Si solar cells. DSSC are mostly flexible, easier to handle and are less susceptible to damage compared to c-Si solar cells. Additionally, DSSC is an excellent choice for indoor application as they perform better under diverse light condition. Most DSSCs are made of liquid medium sandwiched between two conductive polymer layers. However, DSSCs have significantly lower efficiencies compared to silicon solar cells. Also, use of liquid medium resulting in leaking of liquid, and occasional freezing during cold weather, and thermal expansion during hot weather conditions. DSSC can be manufactured in small quantities using relatively inexpensive solution-phase techniques such as roll-to-roll processing and screen printing technology. However, scaling-up the DSSC manufacturing from small-scale laboratory tests to sizeable industrial production requires better and efficient manufacturing processes. This research studies the feasibility of using additive manufacturing technique to fabricate electrodes of DSSC. The study aims to overcome the limitations of DSSCs including preventing leakage and providing more customized design. Experimental studies are performed to evaluate the effects of critical process parameters affecting the quality of electrodes for DSSC. Volume resistivity test is performed to evaluate the efficiency of the electrodes. In this study, the electrodes of DSSC are successfully fabricated using Fused Disposition Modeling (FDM) 3D printing technique. The results of this study would enable additive manufacturing technology towards rapid commercialization of DSSC technology.
机译:染料敏化太阳能电池(DSSC)是第三代太阳能电池用作C-Si太阳能电池的替代。与C-Si太阳能电池相比,DSSC大多是灵活的,更容易处理并且不易受损。此外,DSSC是室内应用的绝佳选择,因为它们在不同的光线条件下表现更好。大多数DSSC由夹在两个导电聚合物层之间的液体培养基制成。然而,与硅太阳能电池相比,DSSCs具有显着较低的效率。而且,使用液体培养基导致液体泄漏,触发在寒冷的天气期间冷冻,以及在炎热天气条件下的热膨胀。可以使用相对便宜的解决方向技术(例如卷到卷加工和丝网印刷技术)以小量级制造DSSC。然而,从小规模的实验室测试到大量的工业生产的缩放DSSC制造需要更好和更有效的制造过程。本研究研究了使用添加剂制造技术制造DSSC电极的可行性。该研究旨在克服DSSCS的局限,包括防止泄漏和提供更多定制的设计。进行实验研究以评估影响DSSC电极质量的关键过程参数的影响。进行体积电阻率测试以评估电极的效率。在该研究中,使用熔融配置建模(FDM)3D打印技术成功制造DSSC的电极。该研究的结果将能够实现DSSC技术的快速商业化的添加剂制造技术。

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