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author:

Chen, J. (Chen, J..) [1] | Zeng, W. (Zeng, W..) [2] | Huang, H. (Huang, H..) [3] | Lou, X. (Lou, X..) [4] | Chen, S. (Chen, S..) [5] | Ye, C. (Ye, C..) [6] | Huang, Z. (Huang, Z..) [7] | Qiu, T. (Qiu, T..) [8]

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Abstract:

Conjugated micro-mesoporous poly(aniline)s (CMPAs) synthesized through Buchwald-Hartwig coupling represent a cutting-edge material platform for selective sequestration of Hg (II) but suffer from moderate porosities and constrained availability of adsorption sites. Herein, we show a salt strategy for fine-tuning the porosity and Hg (II) adsorption performance of a series of S, N dual heteroatom functionalized CMPAs (CMPA-SN). The salt of NaF with appropriate dosage results in strikingly improved surface areas from 26 to 735 m2/g and intensified Hg (II) adsorption capacity from 311 mg/g to 649 mg/g. Moreover, CMPA-SN exhibits an efficient adsorption rate (h = 1250 mg/g/min) and excellent affinity with high Kd as high as 1.24 × 106 mL/g. We successfully correlate the adsorption capacity and surface area, and reveal the synergistic electron-sharing mechanism from N-containing ligands and in-situ decorated S heteroatoms, with 67.6 %/32.4 % contributions and ΔEads = -0.419 eV/ΔEads = -0.487 eV adsorption energy. © 2025 Elsevier B.V.

Keyword:

Hansen solubility parameter Hg (II) adsorption Polymer Salt Surface area

Community:

  • [ 1 ] [Chen J.]Engineering Research Center of Reactive Distillation, Fujian Province University, Fuzhou University International Joint Laboratory of Thermochemical Conversion of Biomass, College of Chemical Engineering, Fuzhou University, Fujian, Fuzhou, 350108, China
  • [ 2 ] [Zeng W.]Engineering Research Center of Reactive Distillation, Fujian Province University, Fuzhou University International Joint Laboratory of Thermochemical Conversion of Biomass, College of Chemical Engineering, Fuzhou University, Fujian, Fuzhou, 350108, China
  • [ 3 ] [Huang H.]Engineering Research Center of Reactive Distillation, Fujian Province University, Fuzhou University International Joint Laboratory of Thermochemical Conversion of Biomass, College of Chemical Engineering, Fuzhou University, Fujian, Fuzhou, 350108, China
  • [ 4 ] [Lou X.]Engineering Research Center of Reactive Distillation, Fujian Province University, Fuzhou University International Joint Laboratory of Thermochemical Conversion of Biomass, College of Chemical Engineering, Fuzhou University, Fujian, Fuzhou, 350108, China
  • [ 5 ] [Chen S.]Engineering Research Center of Reactive Distillation, Fujian Province University, Fuzhou University International Joint Laboratory of Thermochemical Conversion of Biomass, College of Chemical Engineering, Fuzhou University, Fujian, Fuzhou, 350108, China
  • [ 6 ] [Ye C.]Engineering Research Center of Reactive Distillation, Fujian Province University, Fuzhou University International Joint Laboratory of Thermochemical Conversion of Biomass, College of Chemical Engineering, Fuzhou University, Fujian, Fuzhou, 350108, China
  • [ 7 ] [Huang Z.]Engineering Research Center of Reactive Distillation, Fujian Province University, Fuzhou University International Joint Laboratory of Thermochemical Conversion of Biomass, College of Chemical Engineering, Fuzhou University, Fujian, Fuzhou, 350108, China
  • [ 8 ] [Qiu T.]Engineering Research Center of Reactive Distillation, Fujian Province University, Fuzhou University International Joint Laboratory of Thermochemical Conversion of Biomass, College of Chemical Engineering, Fuzhou University, Fujian, Fuzhou, 350108, China

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Source :

Separation and Purification Technology

ISSN: 1383-5866

Year: 2025

Volume: 363

8 . 2 0 0

JCR@2023

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count:

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 3

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