首页> 外文学位 >Characterization of anthocyanin based dye-sensitized organic solar cells (DSSC) and modifications based on bio-inspired ion mobility improvements .
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Characterization of anthocyanin based dye-sensitized organic solar cells (DSSC) and modifications based on bio-inspired ion mobility improvements .

机译:基于花色苷的染料敏化有机太阳能电池(DSSC)的表征和基于生物启发的离子迁移率改进的修饰。

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摘要

The worldwide electrical energy consumption will increase from currently 10 terawatts to 30 terawatts by 2050. To decrease the current atmospheric CO2 would require our civilization to develop a 20 terawatts non-greenhouse emitting (renewable) electrical power generation capability. Solar photovoltaic electric power generation is thought to be a major component of proposed renewable energy-based economy.;One approach to less costly, easily manufactured solar cells is the Dye-sensitized solar cells (DSSC) introduced by Greatzel and others. This dissertation describes the work focused on improving the performance of DSSC type solar cells. In particular parameters affecting dye-sensitized solar cells (DSSC) based on anthocyanin pigments extracted from California blackberries (Rubus ursinus) and bio-inspired modifications were analyzed and solar cell designs optimized.;Using off-the-shelf materials DSSC were constructed and tested using a custom made solar spectrum simulator and photoelectric property characterization. This equipment facilitated the taking of automated I-V curve plots and the experimental determination of parameters such as open circuit voltage (V OC), short circuit current (JSC), fill factor (FF), etc. This equipment was used to probe the effect of various modifications such as changes in the annealing time and composition of the of the electrode counter-electrode.;Solar cell optimization schemes included novel schemes such as solar spectrum manipulation to increase the percentage of the solar spectrum capable of generating power in the DSSC. Solar manipulation included light scattering and photon upconversion. Techniques examined here focused on affordable materials such as silica nanoparticles embedded inside a TiO2 matrix. Such materials were examined for controlled scattering of visible light and optimize light trapping within the matrix as well as a means to achieve photon up-energy-conversion using the Raman effect in silica nano-particles (due to a strong Raman anti-Stoke scattering probability).;Finally, solutions to the mobility problem of organic photovoltaics were explored. The solutions examined here were based on the bio-inspired neural ionic conduction were nature has overcome the poor ionic mobility in solutions (D ∼ 10-5cm2/ s) to achieve amazingly fast ionic conduction using non-electric field energy gradients. Electric-permeability-graded layers with possibility to create an energy gradient that helps the diffusion DSSC electrolyte diffusion were explored in this work.
机译:到2050年,世界范围内的电能消耗将从目前的10太瓦增加到30太瓦。要减少当前的大气CO2,我们的文明将需要发展20太瓦的非温室排放(可再生)发电能力。太阳能光伏发电被认为是提议的基于可再生能源的经济的主要组成部分。; Greatzel等人引入的染料敏化太阳能电池(DSSC)是一种成本较低,易于制造的太阳能电池。本文介绍了致力于改善DSSC型太阳能电池性能的工作。尤其是对影响从加州黑莓(Rubus ursinus)中提取的花青素色素的染料敏化太阳能电池(DSSC)的参数和受生物启发的修饰方法进行了分析,并对太阳能电池设计进行了优化。使用定制的太阳光谱模拟器和光电特性表征。该设备有助于自动绘制IV曲线图并实验确定参数,例如开路电压(V OC),短路电流(JSC),填充系数(FF)等。各种修改,例如退火时间的变化和电极对电极的组成。太阳能电池优化方案包括新颖的方案,例如太阳光谱操纵,以增加能够在DSSC中发电的太阳光谱的百分比。太阳操纵包括光散射和光子上转换。这里检查的技术集中在可负担的材料上,例如嵌入TiO2基质中的二氧化硅纳米颗粒。检查了此类材料的可见光受控散射,并优化了基质内的光陷阱,以及使用二氧化硅纳米粒子中的拉曼效应实现光子上能量转换的方法(由于拉曼抗斯托克散射的可能性很高) );最后,探索了解决有机光伏迁移率问题的方法。此处检查的解决方案是基于生物启发的神经离子传导,自然界已经克服了溶液中较弱的离子迁移率(D〜10-5cm2 / s),从而使用非电场能梯度实现了惊人的快速离子传导。在这项工作中探索了电导率梯度层,该层可能产生有助于扩散DSSC电解质扩散的能量梯度。

著录项

  • 作者

    Mawyin, Jose Amador.;

  • 作者单位

    State University of New York at Stony Brook.;

  • 授予单位 State University of New York at Stony Brook.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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