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Carbon nanodot-based heterostructures for improving the charge separation and the photocurrent generation

机译:碳nanodot-based异质结构为提高电荷分离和光电流的一代

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摘要

The possibility to employ carbon nanodots (CNDs) in solar devices was exploited by combining them with a fulleropyrrolidine derivative (FP2). The interaction between the two species was promoted by the presence of opposite electrostatic charges on CNDs (negatively charged) and FP2 (positively charged). The supramolecular dyad CNDs/FP2 generation was induced at the air/water interface of a Langmuir trough: water soluble CNDs were dissolved in the subphase and FP2 chloroform solution was spread on the subphase; the electrostatic interaction promoted the formation of the supramolecular adduct FP2/CNDs, which was then transferred onto solid substrates. Photo-induced charge transfer was promoted in the FP2/CNDs dyad and we demonstrated that the presence of CNDs increased the short-circuit current density, under light illumination, of a porphyrin-FP2/CNDs thin film by about 300% when compared with a more traditional porphyrin-FP2 solar device.
机译:可能采用碳nanodots (cnd)在太阳能设备是利用相结合fulleropyrrolidine导数(FP2)。两个物种间的相互作用被提拔的存在相反的静电电荷组合(带负电)和FP2(积极指控)。一代是诱导空气/水界面朗缪尔槽:水溶性组合溶解在子阶段和FP2氯仿解决方案是传播子阶段;静电相互作用促进了形成超分子加合物的FP2 /组合,这是然后转移到固体基质。Photo-induced电荷转移被提拔的FP2 / cnd二分体和我们证明了组合的存在增加了短路电流密度,光照明下,当porphyrin-FP2 / cnd薄膜约300%与更传统的porphyrin-FP2相比太阳能设备。

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