[1] | Chen S,Zhang J,Zhang C,et al. Equilibrium and Kinetic Studies of Methyl Orange and Methyl Violet Adsorption on Activated Carbon Derived from Phragmites australis[J]. Desalination,2010,252(1/3):149-156. | [2] | Crini G.Non-conventional Low-cost Adsorbents for Dye Removal:A Review[J]. Bioresour Technol,2006,97(9):1061-1085. | [3] | Mittal A,Malviya A,Kaur D,et al. Studies on the Adsorption Kinetics and Isotherms for the Removal and Rcovery of Methyl Orange from Wastewaters Using Waste Materials[J]. J Hazard Mater,2007,148(1/2):229-240. | [4] | XUE Yonggang,GUAN Song,DAI Xiaohu,et al. Research Progress of Membrane Separation Technology Used in Printing and Dyeing Wastewater Treatment and Reuse[J]. Text Dyeing Finish J,2014,36(5):26-31(in Chinese). 薛勇刚,官嵩,戴晓虎,等. 膜分离技术用于印染废水处理及回用的研究进展[J]. 染整技术,2014,36(5):26-31. | [5] | Kumar R,Ahmad R.Biosorption of Hazardous Crystal Violet Dye from Aqueous Solution onto Treated Ginger Waste(TGW)[J]. Desalination,2011,265(1/3):112-118. | [6] | Auta M,Hameed B H.Preparation of Waste Tea Activated Carbon Using Potassium Acetate as an Activating Agent for Adsorption of Acid Blue 25 Dye[J]. Chem Eng J,2011,171(2):502-509. | [7] | Asghar A,Abdul Raman A A,Wan Daud W M A. Advanced Oxidation Processes for in-situ Production of Hydrogen Peroxide/Hydroxyl Radical for Textile Wastewater Treatment:A Review[J]. J Cleaner Prod,2015,87:826-838. | [8] | Fu Z,Zhang Y,Wang X.Textiles Wastewater Treatment Using Anoxic Filter Bed and Biological Wriggle Bed-Ozone Biological Aerated Filter[J]. Bioresour Technol,2011,102(4):3748-3753. | [9] | AN Liancai,HAN Jiufang,ZHANG Yinghui,et al. Research and Application Progress on Porous Organic Polymers for Adsorption and Separation of Organic Pollutants in Water System[J]. Chinese J Appl Chem,2018,35(9):1019-1025(in Chinese). 安连财,韩久放,章应辉,等. 多孔有机聚合物吸附分离水体系中有机污染物研究和应用进展[J]. 应用化学,2018,35(9):1019-1025. | [10] | Wu D,Xu F,Sun B,et al. Design and Preparation of Porous Polymers[J]. Chem Rev,2012,112(7):3959-4015. | [11] | Dawson R,Cooper A I,Adams D J.Nanoporous Organic Polymer Networks[J]. Prog Polym Sci,2012,37(4):530-563. | [12] | Vincent G,Lukasz J W,Alkordi M,et al. Porous Organic Polymers with Anchored Aldehydes:A New Platform for Post-synthetic Amine Functionalization en Route for Enhanced CO2 Adsorption Properties[J]. Chem Commun,2014,50:1937-1940. | [13] | Chen Q,Liu D,Zhu J,et al. Mesoporous Conjugated Polycarbazole with High Porosity via Structure Tuning[J]. Macromolecules,2014,47(17):5926-5931. | [14] | Zhu Y,Zhang W.Reversible Tuning of Pore Size and CO2 Adsorption in Azobenzene Functionalized Porous Organic Polymers[J]. Chem Sci,2014,5(12):4957-4961. | [15] | Xiang Z,Mercado R,Huck J M,et al. Systematic Tuning and Multifunctionalization of Covalent Organic Polymers for Enhanced Carbon Capture[J]. J Am Chem Soc,2015,137(41):13301-13307. | [16] | Ogoshi T,Yamagishi T,Nakamoto Y.Pillar-Shaped Macrocyclic Hosts Pillar[n]arenes:New Key Players for Supramolecular Chemistry[J]. Chem Rev,2016,116(14):7937-8002. | [17] | Tan L,Li H,Tao Y,et al. Pillar[5]arene-Based Supramolecular Organic Frameworks for Highly Selective CO2 -Capture at Ambient Conditions[J]. Adv Mater,2014,26(41):7027-7031. | [18] | Dai D,Li Z,Yang J,et al. Supramolecular Assembly-Induced Emission Enhancement for Efficient Mercury(Ⅱ) Detection and Removal[J]. J Am Chem Soc,2019,141(11):4756-4763. | [19] | Wu M,Yang Y.A Fluorescent Pillarene Coordination Polymer[J]. Polym Chem,2019,10(23):2980-2985. | [20] | Li Z,Li X,Yang Y.Conjugated Macrocycle Polymer Nanoparticles with Alternating Pillarenes and Porphyrins as Struts and Cyclic Nodes[J]. Small,2019,15(12):1805509. | [21] | Ma Y,Chen L,Li C,et al. A fishing Rod-like Conjugated Polymer Bearing Pillar[5]arenes[J]. Chem Commun,2016,52:6662-6664. | [22] | Li X,Li Z,Yang Y.Tetraphenylethylene-Interweaving Conjugated Macrocycle Polymer Materials as Two-Photon Fluorescence Sensors for Metal Ions and Organic Molecules[J]. Adv Mater,2018,30(20):1800177. | [23] | Lin Q,Fan Y,Mao P,et al. Pillar[5]arene-Based Supramolecular Organic Framework with Multi-guest Detection and Recyclable Separation Properties[J]. Chem Eur J,2018,24(4):777-783. | [24] | Shi B,Guan H,Shangguan L,et al. A Pillar[5]arene-Based 3D Network Polymer for Rapid Removal of Organic Micropollutants from Water[J]. J Mater Chem A,2017,5(46):24217-24222. | [25] | Lan S,Zhan S,Ding J,et al. Pillar[n]arene-Based Porous Polymers for Rapid Pollutant Removal from Water[J]. J Mater Chem A,2017,5(6):2514-2518. | [26] | Ogoshi T,Yamafuji D,Tomohiro A,et al. Achiral Guest-Induced Chiroptical Changes of a Planar-Chiral Pillar[5]arene Containing One π-Conjugated Unit[J]. Chem Commun,2013,49:8782-8784. | [27] | Strutt N L,Fairen-Jimenez D,Iehl J,et al. Incorporation of an A1/A2-Difunctionalized Pillar[5]arene into a Metal-Organic Framework[J]. J Am Chem Soc,2012,134(42):17436-17439. | [28] | Ogoshi T,Shimada Y,Akutsu T,et al. A Rod-Like Phenolic π-Conjugated Polymer with Pillar[5]arene Units in Its Main Chain[J]. Polymer,2017,128:325-329. | [29] | Zhang C,Zhu P,Tan L,et al. Triptycene-Based Hyper-Cross-Linked Polymer Sponge for Gas Storage and Water Treatment[J]. Macromolecules,2015,48(23):8509-8514. | [30] | Kuhn P,Kr ger K,Thomas A,et al. “Everything Is Surface”:Tunable Polymer Organic Frameworks with Utrahigh Dye Sorption Capacity[J]. Chem Commun,2008,44:5815-5817. |
|