化学
表面改性
聚合物
组合化学
电化学
胺气处理
选择性
区域选择性
硝化作用
功能群
化学工程
电极
纳米技术
化学改性
模块化设计
反应性(心理学)
硝基
吸附
高分子化学
有机化学
催化作用
介孔材料
功能性聚合物
碳纤维
电催化剂
共价键
作者
Maartje Otten,Weizhe Zhang,Luke D. J. Adams,J H Huis in't Veld,Pieter C. A. Bruijnincx,Arnaud Thevenon
摘要
Post-polymerization modification can provide access to functional polymers that are difficult to obtain through bottom-up synthesis, allowing systematic tuning of the material properties. Such functional polymers, in turn, offer a powerful platform for tailoring catalytic microenvironments, particularly in the electrochemical CO 2 reduction reaction (CO 2 RR), where tunable CO 2 adsorption and mass transport are critical for selectivity and efficiency. However, achieving precise control over these properties requires accurate inclusion of functional groups on the polymer backbone, which remains a significant challenge. Here, we report a modular post-polymerization approach to functionalize polybutadiene, leveraging the reactivity of the unsaturated bonds, through nitration and subsequent reduction to primary amines. Using tert -butyl nitrite as a simple and inexpensive NO 2 radical source, we achieve tunable and regio- and stereoselective nitro incorporation onto the polymer backbone ranging from 0.8 to 18.6% (nitro per 100 carbon atoms), which could be readily reduced to the primary amine without compromising the polymer backbone integrity. Detailed polymer analysis after 15 N-labeling revealed a high regioselectivity for the functionalization of the internal over terminal unsaturated bonds. When applied as an amine-functionalized layer on a Cu electrode for CO 2 electroreduction, we observed a scaling relationship between the amine functionalization degree and the partial current for C 2 products (ethylene and ethanol). Overall, this work highlights a robust and versatile post-polymerization strategy that advances precision control in polymer functionalization essential for engineering applications, particularly in energy materials.
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