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基于液体的聚合碳氮化物层的生长及其在具有超过 1 V 的 V(oc)的介孔聚合物太阳能电池中的应用。

Liquid-based growth of polymeric carbon nitride layers and their use in a mesostructured polymer solar cell with V(oc) exceeding 1 V.

机构信息

Department of Colloid Chemistry, Max Planck Institute of Colloids and Interfaces , 14424 Potsdam, Germany.

出版信息

J Am Chem Soc. 2014 Oct 1;136(39):13486-9. doi: 10.1021/ja508329c. Epub 2014 Sep 19.

Abstract

Herein we report a general liquid-mediated pathway for the growth of continuous polymeric carbon nitride (C3N4) thin films. The deposition method consists of the use of supramolecular complexes that transform to the liquid state before direct thermal condensation into C3N4 solid films. The resulting films exhibit continuous porous C3N4 networks on various substrates. Moreover, the optical absorption can be easily tuned to cover the solar spectrum by the insertion of an additional molecule into the starting complex. The strength of the deposition method is demonstrated by the use of the C3N4 layer as the electron acceptor in a polymer solar cell that exhibits a remarkable open-circuit voltage exceeding 1 V. The easy, safe, and direct synthesis of carbon nitride in a continuous layered architecture on different functional substrates opens new possibilities for the fabrication of many energy-related devices.

摘要

在此,我们报告了一种通用的液态介导途径,用于生长连续的聚合碳氮化(C3N4)薄膜。沉积方法包括使用超分子配合物,这些配合物在直接热缩合为 C3N4 固体薄膜之前转变为液态。所得薄膜在各种基底上表现出连续的多孔 C3N4 网络。此外,通过在起始配合物中插入额外的分子,可以轻松调节光吸收以覆盖太阳光谱。该沉积方法的优点在于将 C3N4 层用作聚合物太阳能电池中的电子受体,该电池表现出超过 1 V 的显著开路电压。在不同功能基底上以连续层状结构易于、安全和直接地合成氮化碳,为制造许多与能源相关的器件开辟了新的可能性。

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