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Zhang, S. Q.; Wang, S. Y.; Guo, L. P.; Chen, H.; Tan, B.; Jin, S. B. An artificial photosynthesis system comprising a covalent triazine framework as an electron relay facilitator for photochemical carbon dioxide reduction.Journal of Materials Chemistry C 2020, 8, 192..
Zhang, S. Q.; Cheng, G.; Guo, L. P.; Wang, N.; Tan, B. E.; Jin, S. B. Strong-Base-Assisted Synthesis of a Crystalline Covalent Triazine Framework with High Hydrophilicity via Benzylamine Monomer for Photocatalytic Water Splitting.Angewandte Chemie-International Edition 2020..
Tan, L.; Tan, B. Functionalized hierarchical porous polymeric monoliths as versatile platforms to support uniform and ultrafine metal nanoparticles for heterogeneous catalysis.Chemical Engineering Journal 2020, 390, 124485..
Razzaque, S.; Cheng, Y.; Hussain, I.; Tan, B. Synthesis of surface functionalized hollow microporous organic capsules for doxorubicin delivery to cancer cells.Polymer Chemistry 2020, 11, 2110..
Ma, H.; Zhai, T.-L.; Wang, Z.; Cheng, G.; Tan, B.; Zhang, C. Switching porosity of stable triptycene-based cage via solution-state assembly processes.Rsc Advances 2020, 10, 9088..
Ma, H.; Wang, Z.; Zhao, Y. H.; Ou, Q.; Tan, B.; Zhang, C. Microporous polymer based on hexaazatriphenylene-fused triptycene for CO2 capture and conversion.Science China-Materials 2020, 63, 429..
Liu, M.; Wang, X.; Liu, J.; Wang, K.; Jin, S.; Tan, B. Palladium as a Superior Cocatalyst to Platinum for Hydrogen Evolution Using Covalent Triazine Frameworks as a Support.Acs Applied Materials & Interfaces 2020, 12, 12774..
Hua, X.-L.; Li, H.-G.; Tan, B.-E. COFs-based Porous Materials for Photocatalytic Applications.Chinese Journal of Polymer Science 2020..
Guo, L.; Gong, J.; Song, C.; Zhao, Y.; Tan, B.; Zhao, Q.; Jin, S. Donor–Acceptor Charge Migration System of Superhydrophilic Covalent Triazine Framework and Carbon Nanotube toward High Performance Solar Thermal Conversion.ACS Energy Letters 2020, 1300..
Alabadi, A. A.; Abbood, H. A.; Dawood, A. S.; Tan, B. Ultrahigh-CO2 Adsorption Capacity and CO2 Selectivity by Nitrogen-Doped Porous Activated Carbon Monolith.Bulletin of the Chemical Society of Japan 2020, 93, 421..
Zhang, Q.-P.; Sun, Y.-l.; Cheng, G.; Wang, Z.; Ma, H.; Ding, S.-Y.; Tan, B.; Bu, J.-h.; Zhang, C. Highly dispersed gold nanoparticles anchoring on post-modified covalent organic framework for catalytic application.Chemical Engineering Journal 2019, 123471..
Zhang, Q. M.; Zhai, T. L.; Wang, Z.; Cheng, G.; Ma, H.; Zhang, Q. P.; Zhao, Y. H.; Tan, B.; Zhang, C. Hyperporous Carbon from Triptycene-Based Hypercrosslinked Polymer for Iodine Capture.Advanced Materials Interfaces 2019, 6..
Zhang, C. X.; Wang, S. L.; Zhan, Z.; Amin, A. M.; Tan, B. Synthesis of MWCNT-Based Hyper-Cross-Linked Polymers with Thickness-Tunable Organic Porous Layers.Acs Macro Letters 2019, 8, 403..
Xiang, C. Y.; Zhong, X.; Yang, W. T.; Majeed, M. I.; Wang, J.; Yu, J. N.; Hu, J. M.; Xu, Z. S.; Tan, B. E.; Zhang, B. B.; Yan, W. Fe3O4 Nanoparticles Functionalized with Polymer Ligand for T-1-Weighted MRI In Vitro and In Vivo.Polymers 2019, 11..
Wang, S. L.; Xu, M.; Peng, T. Y.; Zhang, C. X.; Li, T.; Hussain, I.; Wang, J. Y.; Tan, B. E. Porous hypercrosslinked polymer-TiO2-graphene composite photocatalysts for visible-light-driven CO2 conversion.Nature Communications 2019, 10..
Wang, N.; Cheng, G.; Guo, L. P.; Tan, B. E.; Jin, S. B. Hollow Covalent Triazine Frameworks with Variable Shell Thickness and Morphology.Advanced Functional Materials 2019, 29..
Razzaque, S.; Wang, K. W.; Hussain, I.; Tan, B. Facile Synthesis of Hypercrosslinked Hollow Microporous Organic Capsules for Electrochemical Sensing of Cu-II Ions.Chemistry-a European Journal 2019, 25, 548..
Liu, M. Y.; Jiang, K.; Ding, X.; Wang, S. L.; Zhang, C. X.; Liu, J.; Zhan, Z.; Cheng, G.; Li, B. Y.; Chen, H.; Jin, S. B.; Tan, B. Controlling Monomer Feeding Rate to Achieve Highly Crystalline Covalent Triazine Frameworks.Advanced Materials 2019, 31..
Liu, M. Y.; Guo, L. P.; Jin, S. B.; Tan, B. E. Covalent triazine frameworks: synthesis and applications.Journal of Materials Chemistry A 2019, 7, 5153..
Li, Y. L.; Feng, L. Y.; Yan, W.; Hussain, I.; Su, L.; Tan, B. PVP- templated highly luminescent copper nanoclusters for sensing trinitrophenol and living cell imaging.Nanoscale 2019, 11, 1286.
Huang, Q.; Guo, L. P.; Wang, N.; Zhu, X.; Jin, S. B.; Tan, B. E. Layered Thiazolo 5,4-d Thiazole-Linked Conjugated Microporous Polymers with Heteroatonn Adoption for Efficient Photocatalysis Application.Acs Applied Materials & Interfaces 2019, 11, 15861..
Hou, S. S.; Razzaque, S.; Tan, B. Effects of synthesis methodology on microporous organic hyper-cross-linked polymers with respect to structural porosity, gas uptake performance and fluorescence properties.Polymer Chemistry 2019, 10, 1299..
He, J.; Razzaque, S.; Jin, S. B.; Hussain, I.; Tan, B. Efficient Synthesis of Ultrafine Gold Nanoparticles with Tunable Sizes in a Hyper-Cross-Linked Polymer for Nitrophenol Reduction.Acs Applied Nano Materials 2019, 2, 546..
Guo, L. P.; Niu, Y. L.; Razzaque, S.; Tan, B.; Jin, S. B. Design of D-A(1)-A(2) Covalent Triazine Frameworks via Copolymerization for Photocatalytic Hydrogen Evolution.Acs Catalysis 2019, 9, 9438..
Cheng, G.; Wang, S. L.; He, J.; Wang, N.; Tan, B. E.; Jin, S. B. Rapid Polymerization of Aromatic Vinyl Monomers to Porous Organic Polymers via Acid Catalysis at Mild Condition.Macromolecular Rapid Communications 2019, 40..
Zhang, Q. M.; Wang, Z.; Cheng, G.; Ma, H.; Zhang, Q. P.; Wan, F. X.; Tan, B. E.; Zhang, C. Efficient alkaloid capture from water using a charged porous organic polymer.Rsc Advances 2018, 8, 33398..
Zhai, T. L.; Xuan, C. J.; Xu, J. C.; Ban, L.; Cheng, Z. M.; Wang, S. L.; Wang, D. L.; Tan, B. E.; Zhang, C. Hyperporous-Carbon-Supported Nonprecious Metal Electrocatalysts for the Oxygen Reduction Reaction.Chemistry-an Asian Journal 2018, 13, 2671..
Yang, Y. W.; Feng, L. Y.; Ren, J.; Liu, Y. F.; Jin, S. B.; Su, L.; Wood, C.; Tan, B. E. Soluble Hyperbranched Porous Organic Polymers.Macromolecular Rapid Communications 2018, 39..
Yang, J.; Xu, M.; Wang, J. Y.; Jin, S. B.; Tan, B. E. A Facile Approach to Prepare Multiple Heteroatom-Doped Carbon Materials from Imine-Linked Porous Organic Polymers.Scientific Reports 2018, 8..