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首页> 外文期刊>Angewandte Chemie >Direct Electrochemical Capture and Release of Carbon Dioxide Using an Industrial Organic Pigment: Quinacridone
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Direct Electrochemical Capture and Release of Carbon Dioxide Using an Industrial Organic Pigment: Quinacridone

机译:使用工业有机颜料:喹ac啶酮直接电化学捕获和释放二氧化碳

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摘要

Limiting anthropogenic carbon dioxide emissions constitutes a major issue faced by scientists today. Herein we report an efficient way of controlled capture and release of carbon dioxide using nature inspired, cheap, abundant and non-toxic, industrial pigment namely, quinacridone. An elec-trochemically reduced electrode consisting of a quinacridone thin film (ca. 100 nm thick)on an ITO support forms a quinacridone carbonate salt. The captured CO2 can be released by electrochemical oxidation. The amount of captured CO2 was quantified by FT-IR. The uptake value for electrochemical release process was 4.61 mmol g~(-1). This value is among the highest reported uptake efficiencies for electrochemical CO2 capture. For comparison, the state-of-the-art aqueous amine industrial capture process has an uptake efficiency of ca. 8 mmol g~(-1).
机译:限制人为二氧化碳的排放是当今科学家面临的主要问题。本文中,我们报告了一种使用自然界激发,廉价,丰富且无毒的工业颜料即喹ac啶酮控制二氧化碳捕获和释放的有效方法。由在ITO载体上的喹ac啶酮薄膜(厚约100 nm)组成的电化学还原电极形成了喹ac啶酮碳酸盐。捕获的CO2可以通过电化学氧化释放。通过FT-IR对捕获的CO 2量进行定量。电化学释放过程的吸收值为4.61 mmol g〜(-1)。该值是报道的电化学二氧化碳捕获的最高吸收效率之一。为了进行比较,最先进的胺水胺工业捕集工艺的吸收效率约为。 8 mmol g〜(-1)。

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