School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram Maruthamala PO, Vithura, Thiruvananthapuram, 695551, Kerala, India.
Polymer Science and Engineering Division CSIR-National Chemical Laboratory, Pune, 411008, India.
Chemistry. 2023 Jun 19;29(34):e202300674. doi: 10.1002/chem.202300674. Epub 2023 May 2.
In this study, composites of HKUST-1 MOF with nanocellulose, HKUST-1@NCs, have been prepared and explored for CO /N gas-separation and dye-sorption based applications. Our biopolymer-MOF composites are prepared via a copper ion pre-seeding method, in which, the HKUST-1 crystallites are grown in situ on the Cu-seeded and carboxylate anchored NC fibers for a better interfacial integration between the MOF and the polymer matrices. Static gas sorption studies show the capability of one of our HKUST-1@NC composites to reach ∼300 % enhancement in the CO /N sorption selectivity compared to the corresponding MOF alone - blank reference sample prepared at similar conditions. The same composite, C100, in the bulk powder form, shows a remarkable IAST sorption selectivity of 298 (CO /N ) at 298 K and 1 bar for the CO /N (15/85, v/v) gas mixture. The relative position of the C100, in the bound plot visualizations of the CO /N separation trade-off factors indicate a significant potential. The HKUST-1@NC composites have also been processed along with a polymeric cellulose acetate (CA) matrix as HKUST-1@NC@CA films to study them as free-standing mixed-matrix membranes. The CO /N sorption selectivity, at 298 K and 1 bar is 600 for one such membrane, C-120@CA, as bulk sample studied by the static gas sorption. The composite, C120, exhibits a good uptake with an enhancement of 11 % for alizarin and 70 % for Congo red in comparison to the uptakes of the corresponding blank reference HKUST-1 sample, B120.
在这项研究中,制备了 HKUST-1 MOF 与纳米纤维素的复合材料 HKUST-1@NCs,并探索了其在 CO/N 气体分离和染料吸附方面的应用。我们的生物聚合物-MOF 复合材料是通过铜离子预种方法制备的,在该方法中,HKUST-1 晶种原位生长在铜种和羧酸根锚定的 NC 纤维上,以改善 MOF 和聚合物基质之间的界面整合。静态气体吸附研究表明,我们的一种 HKUST-1@NC 复合材料能够将 CO/N 吸附选择性提高约 300%,与单独的 MOF(在相似条件下制备的空白参考样品)相比。同样的复合材料 C100,在块状粉末形式下,在 298 K 和 1 bar 下对 CO/N(15/85,v/v)混合气显示出显著的 IAST 吸附选择性 298(CO/N)。在 CO/N 分离权衡因素的绑定图可视化中,C100 的相对位置表明了其具有显著的潜力。还将 HKUST-1@NC 复合材料与聚合物醋酸纤维素(CA)基质一起加工,制成 HKUST-1@NC@CA 薄膜,以研究它们作为独立混合基质膜的性能。在静态气体吸附研究中,作为块状样品的一种这样的膜 C-120@CA 的 CO/N 吸附选择性在 298 K 和 1 bar 时为 600。与相应的空白参考 HKUST-1 样品 B120 的吸附量相比,复合材料 C120 对茜素红的吸附量增加了 11%,对刚果红的吸附量增加了 70%。