Kirchon Angelo, Day Gregory S, Fang Yu, Banerjee Sayan, Ozdemir Osman K, Zhou Hong-Cai
Department of Chemistry, Texas A&M University, College Station, TX 77843-3255, USA.
Framergy Inc, 800 Raymond Stoltzer Parkway, 2011, College Station, TX 77843-3255, USA.
iScience. 2018 Jul 27;5:30-37. doi: 10.1016/j.isci.2018.06.009. Epub 2018 Jul 11.
Metal-Organic Frameworks (MOFs) have been intensively studied for applications such as gas storage, gas separation, catalysis, drug delivery, and more. Typically, the development of MOFs involves a post-synthetic solvent exchange process, which usually requires a significant investment of time, energy, labor, and resources. Herein, we propose a novel post-synthetic processing methodology for commercial and laboratory-scale MOFs called "Suspension Processing." Suspension processing is a non-destructive, agitation-based technique that provides efficient solvent exchange, pore cleaning, and surface defect removal in MOFs. Suspension processing has shown the capability to significantly improve the surface area and gas uptake properties of microporous MOFs, including PCN-250, UiO-66, and HKUST-1. Suspension processing displays improved time, energy, and labor efficiency, as well as considerably enhanced product quality. These findings confirm suspension processing as a straightforward methodology with applicability as a universal technique for the production of high-quality microporous materials.
金属有机框架材料(MOFs)已被广泛研究用于气体储存、气体分离、催化、药物递送等诸多应用领域。通常,MOFs的开发涉及合成后溶剂交换过程,这通常需要投入大量的时间、精力、人力和资源。在此,我们提出了一种针对商业规模和实验室规模MOFs的新型合成后处理方法,称为“悬浮处理”。悬浮处理是一种基于搅拌的无损技术,可在MOFs中实现高效的溶剂交换、孔道清洁和表面缺陷去除。悬浮处理已显示出能够显著提高微孔MOFs(包括PCN - 250、UiO - 66和HKUST - 1)的表面积和气体吸附性能。悬浮处理在时间、能源和人力效率方面有所提升,产品质量也显著提高。这些发现证实悬浮处理是一种简单直接的方法,可作为生产高质量微孔材料的通用技术。