Department of Chemistry, Capital Normal University, Beijing, 100048, China.
Soft Matter. 2017 Oct 25;13(41):7505-7513. doi: 10.1039/c7sm01839h.
The effect of compressed CO on the properties of ordered mesoporous carbon (OMC) was investigated based on the self-assembly of surfactants in aqueous solution under mild conditions, and the acidic or basic conditions commonly used in traditional methods were substituted by compressed CO. Compressed CO acts as both a physiochemical additive and a reagent to produce an acid catalyst in the synthesis. This new one-pot assembly approach can efficiently adjust the porous characteristics of OMC by employing different amounts of compressed CO, and the self-assembly mechanism is proposed. The spherical micelles formed by triblock copolymer Pluronic F127 serve as a structure-directing agent for the controllable synthesis of nanomaterials. Resorcinol/phloroglucinol and formaldehyde are used as carbon-yielding components. It was found that CO can penetrate into the hydrocarbon-chain region of the F127 micelles, leading to template swelling and influencing the properties of OMC. The surfactant and precursors attracted by H-bonding interactions self-assemble and produce OMC after polymerization and carbonization. The resulting OMC as a supercapacitor electrode material exhibits outstanding specific capacitances, and the electrochemical performances change as the structural properties are varied.
在温和条件下,通过表面活性剂在水溶液中的自组装研究了压缩 CO 对有序介孔碳(OMC)性能的影响,取代了传统方法中常用的酸性或碱性条件。压缩 CO 既是物理化学添加剂,又是合成中产生酸催化剂的试剂。这种新的一锅法组装方法可以通过使用不同量的压缩 CO 来有效地调节 OMC 的多孔特性,并提出了自组装机制。三嵌段共聚物 Pluronic F127 形成的球形胶束用作纳米材料可控合成的结构导向剂。间苯二酚/邻苯二酚和甲醛用作产碳成分。研究发现,CO 可以渗透到 F127 胶束的烃链区,导致模板膨胀并影响 OMC 的性能。通过氢键相互作用吸引的表面活性剂和前体自组装,并在聚合和碳化后产生 OMC。作为超级电容器电极材料的所得 OMC 表现出优异的比电容,并且电化学性能随结构特性的变化而变化。