Department of Chemical Engineering Indian Institute of Technology Kanpur , Kanpur 208016, India.
Langmuir. 2017 Aug 8;33(31):7692-7700. doi: 10.1021/acs.langmuir.7b01361. Epub 2017 Jul 24.
We demonstrate a facile one-pot synthesis of porous "flow-through" ZnO nanoparticle impregnated carbon/silica monoliths with high mechanical strength and interconnected end-to-end pores decorated with functional and catalytic nanoparticles. The materials and conditions for the synthesis were tailored to achieve the desired properties of high mechanical strength, good flow-through permeability, and crack-free morphology. Monoliths were prepared from a resorcinol formaldehyde rout but with the addition of tetraethyl-orthosilicate and a metal oxide precursor, ZnCl. The monoliths were ambient dried and carbonized under optimized conditions to suppress cracks. Compressive tests of both the resin and carbonized monoliths were performed to examine the effect of the metal oxide precursor on the mechanical properties. The permeability of the monoliths was determined to verify their utility as a flow-through material. The monoliths exhibited a high compressive modulus of ∼30 MPa compared with conventional carbon aerogels and a permeability of ∼10 m. Various characterization techniques were used to analyze the surface morphology, pore texture, and chemical composition of the monoliths. Finally, Ag nanoparticles were incorporated in the monoliths to demonstrate an example of a "flow-through" catalysis application where controlled catalytic conversion of para-nitrophenol into para-aminophenol could be achieved in a continuous flow reactor mode.
我们展示了一种简便的一锅法合成具有高机械强度和互连端到端孔的多孔“直通”氧化锌纳米颗粒浸渍碳/二氧化硅整体式材料,这些孔用功能和催化纳米颗粒进行了修饰。合成的材料和条件经过精心设计,以实现高机械强度、良好的直通渗透性和无裂纹形态的理想特性。整体式材料是通过间苯二酚甲醛路线制备的,但添加了四乙氧基硅烷和金属氧化物前体 ZnCl。整体式材料在环境温度下干燥,并在优化条件下碳化以抑制裂纹。对树脂和碳化整体式材料进行了压缩测试,以研究金属氧化物前体对机械性能的影响。测定了整体式材料的渗透性,以验证其作为直通材料的实用性。与传统的碳气凝胶相比,整体式材料表现出约 30 MPa 的高压缩模量和约 10 m 的渗透性。各种表征技术用于分析整体式材料的表面形态、孔结构和化学组成。最后,将 Ag 纳米颗粒掺入整体式材料中,以展示“直通”催化应用的一个示例,其中可以在连续流动反应器模式下实现对对硝基苯酚的可控催化转化为对氨基酚。