| Literature DB >> 33344414 |
Qianhui Liu1, Shuhao Yang1, Hlib Repich1, Yixuan Zhai1, Xiaosa Xu1, Yeru Liang2, Hejun Li1, Hongqiang Wang1, Fei Xu1.
Abstract
The incorporation of functional building blocks to construct functionalized and highly porous covalentEntities:
Keywords: covalent triazine-based frameworks; functionalization; lithium- sulfur batteries; organic dye adsorption; pore structure
Year: 2020 PMID: 33344414 PMCID: PMC7738625 DOI: 10.3389/fchem.2020.584204
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 1(A) Chemical structure of CTF-PO71. (B) FT-IR spectra of CTF-PO71 and PO71.
Figure 2XPS spectra of (A) C1s and (B) N1s of CTF-PO71.
Figure 3(A,B) TEM images of CTF-PO71. (C) Nitrogen adsorption–desorption isotherms, and (D) NLDFT pore size distribution curves of CTF-PO71 and CTF.
Figure 4(A) TEM image, and (B–E) elemental mappings of CTF-PO71/S.
Figure 5(A) PXRD patterns of CTF-PO71/S (red), CTF/S (dark), and elemental sulfur (orange). (B) TGA curves of CTF-PO71/S and CTF/S.
Figure 6(A) Cycling performance and Coulombic efficiency of CTF/S and CTF-PO71/S at 0.1C. (B) Rate performance measured at various C rates with 10 cycles at each rate. Discharge and charge curves of (C) CTF-PO71/S and (D) CTF/S recorded at last cycle of each rate. (E) Long cycling performance and Coulombic efficiency of CTF/S and CTF-PO71/S at 1C.
Figure 7Concentrations of (A) MB and (B) R6G solution as a function of adsorption time with CTF-PO71 and CTF, and the inset showing the digital photos of dye solution after various adsorption times of 0 min, 3 min, 10 min, 20 min, 40 min, 60 min, 2 h, 4 h, 6 h, 8 h, 18 h, and 24 h. (C) FT-IR spectra of CTF-PO71, MB, and the sample MB-CTF-PO71 after adsorption of MB.
Figure 8Adsorption capacities on (A) MB and (B) R6G of CTF-PO71s within a series of adsorption time.
Figure 9(A) Schematic illustration of selective adsorption. (B) Selective adsorption experiments of mix solution of MB and R6G using CTF-PO71-1 in a syringe.