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Application of Conjugated Chlorophyll from Natural Dye (Imperata cylindrica) to Apply in Hybrid DSSC as Third Generation Solar Energy

机译:共轭叶绿素从天然染料(Imperata Cylindrica)的应用在杂交DSSC应用中的第三代太阳能

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High performances of Hybrid Dye Sensitized Solar Cell are necessary in absorbing more sunlight and needed renewable energy source to replace depleted fossil fuels via green energy. Hybrid DSSC is another promising option towards green energy to explore. This research aims, i) to study conjugated chlorophyll in order to increase charge carrier in molecule structure besides, increase the absorption spectrum via conjugating process with the addition of different amount Ferric (III) Chloride (FeCl_3) acting as catalyst and, ii) to determine the effect of FeCl_3 on the performance of conjugated dye as sensitizers in Hybrid DSSC. The conjugated chlorophyll shows a using UV- Visible analysis corresponding to conjugated chlorophyll absorbed in high region called red shifted which the maximum absorption obtain at a wavelength of 360nm and 311nm. Fourier Transform Infra-Red characterization of the an existing Fe-0 bond appears at 430 cm~(-1) to 445 cm~(-1) and C≡C bond at 2244 cm~(-1) to 2260 cm~(-1). 10% FeCl_3 in conjugated chlorophyll produce huge impact to electrical conductivity and efficiency with the highest value; 0.114 S/cm and 0.14%; respectively. Thus, it can be conclude that 10% FeCl_3 of conjugated chlorophyll - Imperata cylindrica (iCHLO-IC) was suitable to be used for the next generation of hybrid DSSC.
机译:杂交染料的高性能敏化太阳能电池在吸收更多阳光下是必要的,并且需要通过绿色能量替换耗尽的化石燃料。 Hybrid DSSC是探索绿色能源的另一种有希望的选择。本研究的目的是研究缀合的叶绿素,以增加分子结构中的电荷载体,通过加入用作催化剂和ii)的不同量铁(III)氯化物(FECL_3)来增加吸收光谱。确定FECL_3对杂交DSSC中共轭染料作为敏化剂的性能的影响。共轭叶绿素显示使用与在称为红色的高区域中吸收的共轭叶绿素的UV-可见分析,其最大吸收在360nm和311nm的波长下获得。傅里叶变换红外线表征现有的Fe-0键显示在430cm〜(-1)至445cm〜(-1)和2244cm〜(-1)至2260cm〜( - 1)。共轭叶绿素中10%FECL_3对电导率和效率产生巨大影响,具有最高值; 0.114 s / cm和0.14%;分别。因此,可以得出结论,共轭叶绿素 - 临时圆柱(ICHLO-IC)的10%FECL_3适用于下一代杂交DSSC。

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