Li Haiying, Meng Bo, Chai Song-Hai, Liu Honglai, Dai Sheng
State Key Laboratory of Chemical Engineering and Department of Chemistry , East China University of Science and Technology , Shanghai , 200237 , China . Email:
Chemical Sciences Division , Oak Ridge National Laboratory , Oak Ridge , Tennessee 37831 , USA . Email:
Chem Sci. 2016 Feb 1;7(2):905-909. doi: 10.1039/c5sc04034e. Epub 2015 Nov 13.
A hyper-crosslinked β-cyclodextrin porous polymer (BnCD-HCPP) was designed and synthesized facilely by β-cyclodextrin benzylation and subsequent crosslinking a Friedel-Crafts alkylation route. The BnCD-HCPP shows an extremely high BET surface area, large pore volume, and high thermal stability, making it a highly efficient adsorbent for removal of aromatic pollutants from water. The adsorption efficiency in terms of distribution coefficient, defined as the ratio of adsorption capacity to equilibrium adsorbate concentration, ranged from 10 to 10 mL g within a concentration of 0-100 ppm, one order of magnitude higher than that of other β-cyclodextrin-based adsorbents reported previously. The molar percentage of adsorbate to β-cyclodextrin exceeded 300%, suggesting that the adsorption occurred not only in the cyclodextrin cavities a 1 : 1 complexation, but also in the nanopores of the BnCD-HCPP created during the hyper-crosslinking. The BnCD-HCPP can be further functionalized by incorporation of gold nanoparticles for catalytic transformation of adsorbed phenolic compounds such as 4-nitrophenol to 4-aminophenol.
通过β-环糊精苄基化并随后采用傅克烷基化路线进行交联,简便地设计并合成了一种超交联β-环糊精多孔聚合物(BnCD-HCPP)。BnCD-HCPP具有极高的比表面积、大孔容和高热稳定性,使其成为从水中去除芳香族污染物的高效吸附剂。以分配系数衡量的吸附效率,即吸附容量与平衡吸附质浓度之比,在0-100 ppm的浓度范围内为10至10 mL g,比先前报道的其他基于β-环糊精的吸附剂高一个数量级。吸附质与β-环糊精的摩尔百分比超过300%,这表明吸附不仅发生在环糊精腔内形成1:1络合物,还发生在超交联过程中形成的BnCD-HCPP的纳米孔中。通过掺入金纳米颗粒,BnCD-HCPP可进一步功能化,用于将吸附的酚类化合物如4-硝基苯酚催化转化为4-氨基苯酚。