首页> 外文会议>Conference on Organic Photovoltaics III, Jul 10-11, 2002, Seattle, Washington, USA >Dye-Sensitization of Titanium Dioxide Thin Films by Ru(II)-bpp-bpy complexes
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Dye-Sensitization of Titanium Dioxide Thin Films by Ru(II)-bpp-bpy complexes

机译:Ru(II)-bpp-bpy络合物对二氧化钛薄膜的染料敏化

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New dyes of the type Ru(II)(bdmpp)(bpy) [where bdmpp is 2.6-bis(3.5-dimethyl-N-pyrazoyl)pyridine and bpy is 2.2′-bipyridine-4.4′-dicarboxylic acid] are prepared and characterized by infra-red (IR). mass (MS) and electrospray mass spectroscopy (ES-MS) as well as ~1H NMR (ID and 2D) spectroscopies. The compounds present broad and very high intensity MLCT absorption bands in the visible and can be chemically anchored on TiO_2 films via ester-like linkage involving carboxylato groups. These complexes have been tested with success as potential molecular antennas in dye-sensitized solar cells. Both opaque and transparent nanocrystalline TiO_2 thin film electrodes obtained by a doctor blade technique sensitized by these complexes were incorporated in a sandwich type regenerative photoelectrochemical solar cell containing 0.1M LiI +0.01M I_2 in propylene carbonate as well as a platinized conductive glass counter electrode. The cell was characterized by Raman spectroscopy under anodic and cathodic bias. Two new vibration bands were observed in the lower frequency region. The first one at 112 cm~(-1) is due to tri-iodide formed on the photoactive electrode, and the second one at 167 cm~(-1) is a sign of the dye/iodide interaction and corresponds to a vibration in a chemically stable "DI" intermediate species. Under direct sunlight illumination (solar irradiance of 60 mW/cm~2) by using a composite polymer solid state electrolyte, the cell ITO/TiO_2/[Ru(II)(bdmpp)(bpy)(NCS)](PF_6)/electrolyte/Pt-ITO produced a continuous photocurrent as high as 4.29mA/cm~2, and gave IPCE values about half of the corresponding values obtained by the standard N3 dye under the same conditions. The photovoltage is about 600 mV and the overall energy conversion cell's efficiency is as high as 1.72%.
机译:制备并表征了Ru(II)(bdmpp)(bpy)类型的新染料[其中bdmpp是2.6-双(3.5-二甲基-N-吡唑酰基)吡啶,bpy是2.2'-联吡啶-4.4'-二羧酸]通过红外(IR)。质谱(MS)和电喷雾质谱(ES-MS)以及〜1H NMR(1D和2D)光谱。该化合物在可见光中具有宽且非常高强度的MLCT吸收带,可以通过涉及羧基的酯样键化学固定在TiO_2薄膜上。这些配合物已成功测试为染料敏化太阳能电池中的潜在分子天线。将通过这些复合物敏化的刮刀技术获得的不透明和透明纳米晶TiO_2薄膜电极,都包含在夹层型再生光电化学太阳能电池中,该电池在碳酸亚丙酯中的含量为0.1M LiI + 0.01M I_2,并且镀铂的导电玻璃对电极也是如此。通过阳极和阴极偏压下的拉曼光谱对电池进行表征。在低频区域观察到两个新的振动带。第一个在112 cm〜(-1)处是由于在光活性电极上形成了三碘化物,而第二个在167 cm〜(-1)处是染料/碘相互作用的标志,并且对应于化学稳定的“ DI”中间体。在使用复合聚合物固态电解质的直接日光照射下(太阳辐照度为60 mW / cm〜2),电池ITO / TiO_2 / [Ru(II)(bdmpp)(bpy)(NCS)](PF_6)/电解质/ Pt-ITO产生的连续光电流高达4.29mA / cm〜2,在相同条件下的IPCE值约为标准N3染料获得的对应值的一半。光电压约为600 mV,整个能量转换电池的效率高达1.72%。

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