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. 2022 Apr 1;51(8):3243–3262. doi: 10.1039/d0cs01192d

Performance of state-of-the-art porous adsorbents for iodine uptake.

Category Name BET surface area (m2 g−1) Pore volume (cm3 g−1) Iodine uptake (g g−1) Ref.
Activated carbon Activated Carbon 4.35 157
Uassis-PC800 3053 1.67 2.25 158
KOH-AC 1973 1.15 3.76 55
AC 1292 0.74 2.42 55
AC 820 0.5 0.76 159
Aerogels Cg-5C 1200 2.30 2.39 35
Cg-5P 957 1.62 0.87 35
MoSx 370 0.93 1.00 6
NiMoS 490 1.39 2.25 37
CoMoS 360 0.50 2.00 37
SbSnS 240 1.16 2.00 37
ZnSnS 400 0.77 2.25 37
KCoS 350 1.17 1.60 37
Porous organic polymers PAF-23 82 0.04 2.71 52
PAF-24 136 0.10 2.76 52
PAF-25 262 0.20 2.60 52
AzoPPN 400 0.68 2.90 136
PSIF-5 574 1.41 4.85 137
SCMP-II 120 0.62 3.45 56
TTPB 222 0.13 4.43 7
TTPPA 512 0.30 4.90 51
TatPOP-2 36.5 0.18 4.50 116
Zeolites HISL 0.53 31
Ag@4A 23.62 0.077 0.160 160
Bi5@Mordenite 412 0.27 0.538 161
Mordenite 305 0.19 0.275 161
ZIF-67@MCF 1148 0.76 1.78 162
Covalent organic frameworks HcOFa 2.90 77
TPB-DMTP 1927 1.28 6.26 41
TTA-TTB 1733 1.01 4.95 41
COF-DL229 1762 0.64 4.7 138
TPT-DHBD 109 0.30 5.43 42
SIOC-COF-7 618 0.41 4.81 8
COF-LZU1 858 0.46 5.30 163
TpPa1 765 0.48 2.45 163
Micro-COF-1 816 0.59 2.9 45
Micro-COF-2 1056 0.71 3.5 45
Meso-COF-3 982 0.84 4.0 45
Meso-COF-4 926 1.01 3.3 45
a

Studies were conducted for a single crystal and no BET surface area or pore volume was reported.