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Conductive and photovoltaic properties of multilayered ultrathin films designed by layer-by-layer assembly of titanium oxides

机译:通过氧化钛的逐层组装设计的多层超薄膜的导电和光电性能

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摘要

Titania-based ultrathin films were fabricated by layer-by-layer (LbL) assembly of titanium (IV) bis(ammonium lactato) dihydroxide (TALH) and polyelectrolytes. The thickness of the titania monolayer in the LbL films was 4–5 nm, which was consistent with the particle size of TALH in water. The conductivity and the electron mobility of the LbL films reached 10[−8]Scm[−1] and 10[−5] cm2 V[−1]s[−1], respectively. These results suggest that there exist percolation paths for the electron transport in the LbL film. Furthermore, it is demonstrated that photovoltaic properties of the LbL film can serve as an effective electron-transporting and accepting layer.
机译:通过钛(IV)双(乳酸内铵)二氢氧化物(TALH)和聚电解质的逐层(LbL)组装来制造基于二氧化钛的超薄膜。 LbL膜中二氧化钛单层的厚度为4–5 nm,这与水中TALH的粒径一致。 LbL薄膜的电导率和电子迁移率分别达到10 [-8] Scm [-1]和10 [-5] cm2 V [-1] s [-1]。这些结果表明,在LbL膜中存在用于电子传输的渗流路径。此外,证明了LbL膜的光电性能可以用作有效的电子传输和接受层。

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