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Enhancing Thermal Stability and Lifetime of Solid-State Dye-Sensitized Solar Cells via Molecular Engineering of the Hole-Transporting Material Spiro-OMeTAD

机译:通过空穴传输材料Spiro-OMeTAD的分子工程技术提高固态染料敏化太阳能电池的热稳定性和寿命

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摘要

Thermal stability of hybrid solar cells containing spiro-OMeTAD as hole-transporting layer is investigated. It is demonstrated that fully symmetrical spiro-OMeTAD is prone to crystallization, and growth of large crystalline domains in the hole-transporting layer is one of the causes of solar cell degradation at elevated temperatures, as crystallization of the material inside the pores or on the interface affects the contact between the, absorber and the hole transport. Suppression of the crystal growth in the hole-transporting layer is demonstrated to be a viable tactic to achieve a significant increase in the solar cell,:resistance to thermal stress and improve the overall lifetime of the device. Findings described in this publication could be applicable to hybrid solar cell research as a number of well-performing architectures rely heavily upon doped spiro-OMeTAD as hole-transporting material.
机译:研究了含有螺-OMeTAD作为空穴传输层的混合太阳能电池的热稳定性。已经证明,完全对称的螺-OMeTAD易于结晶,并且空穴传输层中大的晶畴的生长是太阳能电池在高温下降解的原因之一,因为孔内或孔内材料的结晶。界面影响吸收体和空穴传输之间的接触。事实证明,抑制空穴传输层中的晶体生长是实现太阳能电池显着增加的可行策略,即:抵抗热应力并提高器件的整体寿命。该出版物中描述的发现可能适用于混合太阳能电池研究,因为许多性能良好的体系结构严重依赖于掺杂的螺-OMeTAD作为空穴传输材料。

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