near-infrared indocyanine materials for bioanalysis and nano-tio2 photoanodes of solar cell

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ID: 245420
2013
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Ranked #118 of 443 articles by views in reproductive biology and endocrinology

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Abstract
Two near-infrared fluorescence N-p-carboxybenzyl indocyanines with the maxima fluorescence emission wavelengths of 565 nm and 641 nm in water, respectively, were synthesized by the ultrasonic method. Compared with those in water, the fluorescence intensity of the dyes became weaker in the solution of an alkali, alkaline-earth, or transition metal ion, except in Ag+ or Zn2+; in the solution of α-cyclodextrin or β-cyclodextrin, the fluorescence intensity of them was increased, even under strong acidic condition. The indocyanines were converted into their succinimidyl active ester for conjugating with NH2 groups of lysine or BSA. Porous nano-TiO2 film with 68~75 nm thickness was prepared on ITO conductive glass from tetrabutyl titanate by sol-gel. FESEM showed that the diameter of the nano-TiO2 particle was 30~50 nm and the pore size was 200~300 nm. The indocyanines with or without the presence of the alkali, alkaline-earth, transition metal ion, or cyclodextrin could make the nano-TiO2 films sensitized, and the products could be used as anodes for dye-sensitized solar cells.
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wang2013journalnear-infrared Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Liqiu Wang;Pengjun Wang;Yang Liu;Weiwei Nie;Xiaofei Lv;Yue Wei;Yangyang Hao;Hailing Yu;Liang Tian;Lihui Zheng;Liuqing Yang
Journal reproductive biology and endocrinology
Year 2013
DOI
10.1155/2013/695107
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