So Seulgi, Fung Han Wai Millie, Kartub Kellen, Maley Adam M, Corn Robert M
Department of Chemistry, University of California-Irvine , Irvine, California 92697, United States.
J Phys Chem Lett. 2017 Feb 2;8(3):576-579. doi: 10.1021/acs.jpclett.6b02873. Epub 2017 Jan 13.
Ordered nanocone arrays of the electroactive polymer poly(3,4-ethylenedioxythiophene) (PEDOT) were fabricated by the simultaneous oxygen plasma etching of an electrodeposited PEDOT thin film coated with a hexagonally closed packed polystyrene bead monolayer. PEDOT nanocone arrays with an intercone spacing of 200 nm and an average nanocone height of 350 nm exhibited a low broadband reflectivity of <1.5% from 550 to 800 nm. Electrochemical modulation of the oxidation state of the PEDOT nanocone array film was used to change both its ex situ absorption spectrum (electrochromism) and reflection spectrum (electroreflectivity). The sign of the PEDOT nanocone array electroreflectivity was opposite to that observed from unmodified PEDOT thin films; this significant difference is attributed to the unique optical behavior of nanostructured surfaces with an interfacial layer that contains a graded mix of air and highly absorptive nanocones. The combined electrochromic and electroreflective behavior of the antireflective PEDOT nanocone array films should find promising applications in solar energy cells, sensors and other optical devices.
通过对涂覆有六方密堆积聚苯乙烯珠单层的电沉积聚(3,4 - 乙撑二氧噻吩)(PEDOT)薄膜进行同步氧等离子体蚀刻,制备了电活性聚合物PEDOT的有序纳米锥阵列。锥间距为200 nm且平均纳米锥高度为350 nm的PEDOT纳米锥阵列在550至800 nm范围内表现出<1.5%的低宽带反射率。利用PEDOT纳米锥阵列薄膜氧化态的电化学调制来改变其非原位吸收光谱(电致变色)和反射光谱(电反射率)。PEDOT纳米锥阵列电反射率的符号与未改性PEDOT薄膜所观察到的相反;这种显著差异归因于具有包含空气和高吸收性纳米锥渐变混合物的界面层的纳米结构表面的独特光学行为。抗反射PEDOT纳米锥阵列薄膜的电致变色和电反射行为相结合,应在太阳能电池、传感器和其他光学器件中找到有前景的应用。