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CdSe Quantum Dots for Solar Cell Devices

机译:用于太阳能电池设备的CdSe量子点

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CdSe quantum dots have been prepared with different sizes and exploited as inorganic dye to sensitize a wide bandgap TiO_2 thin films for QDs solar cells. The synthesis is based on the pyrolysis of organometallic reagents by injection into a hot coordinating solvent. This provides temporally discrete nucleation and permits controlled growth of macroscopic quantities of nanocrystallites. XRD, HRTEM, UV-visible, and PL were used to characterize the synthesized quantum dots. The results showed CdSe quantum dots with sizes ranging from 3 nm to 6 nm which enabled the control of the optical properties and consequently the solar cell performance. Solar cell of 0.08% performance under solar irradiation with a light intensity of 100 mW/cm~2 has been obtained. CdSe/TiO_2 solar cells without and with using mercaptopropionic acid (MPA) as a linker between CdSe and TiO_2 particles despite a V_(oc) of 428 mV, J_(sc) of 0.184 mAcm~(-2), FF of 0.57, and η of 0.05% but with linker despite a V_(oc) of 543 mV, J_(sc) of 0.318 mAcm~(-2), FF of 0.48, and η of 0.08%, respectively.
机译:制备了不同尺寸的CdSe量子点,并用作无机染料来敏化QDs太阳能电池的宽带隙TiO_2薄膜。合成是基于有机金属试剂的热解,方法是将其注入热配位溶剂中。这提供了时间上离散的成核作用,并允许宏观数量的纳米微晶的受控生长。 XRD,HRTEM,UV-可见光和PL用于表征合成的量子点。结果显示,CdSe量子点的尺寸范围为3 nm至6 nm,从而可以控制光学性能,从而控制太阳能电池的性能。获得了在光强度为100 mW / cm〜2的太阳辐射下性能为0.08%的太阳能电池。尽管V_(oc)为428 mV,J_(sc)为0.184 mAcm〜(-2),FF为0.57和FF,但不使用巯基丙酸(MPA)作为CdSe和TiO_2颗粒之间的连接基的CdSe / TiO_2太阳能电池η为0.05%,但尽管V_(oc)为543 mV,J_(sc)为0.318 mAcm〜(-2),FF为0.48,η为0.08%,但仍具有连接基。

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