To address the environmental issues arising from the emission of radiotoxic iodine from nuclear waste streams, developing high-capacity and recyclable adsorbents is urgently demanded. In this study, a nitrogen-rich covalent-triazine framework (CTF-bpy) was synthesized through the ionothermal synthetic method and was used as a reusable adsorbent to capture iodine vapor for sequential cycles. The obtained CTF-bpy adsorbent showed ultrahigh iodine vapor capture capacity of 4.52 g.g−1 at 90 °C and atmospheric pressure, which ranks among the highest values reported to date. CTF-bpy could be simply recycled by washing and heating while preserving above 89.6% of its initial iodine capture capacity after five consecutive cycles, demonstrating its e...
Management of hazardous waste is a pressing global concern, and the battle to ameliorate such waste ...
International audienceThe potential use of three metal-organic frameworks (MIL-53(Al), MIL-120(Al) a...
The effective and safe capture and storage of radioactive iodine (129I or 131I) is of significant im...
With the continuous development of nuclear energy, radioactive iodine in nuclear waste is becoming i...
Porous organic frameworks may be a kind of promising material to address environmental issues such a...
International audienceTo safeguard the development of nuclear energy, practical techniques for captu...
To safeguard the development of nuclear energy, practical techniques for capture and storage of radi...
Covalent organic frameworks (COF) with periodic porous structures and tunable functionalities are a ...
Using porous materials to cope with environmental issues is promising but remains a challenge especi...
Radioactive iodine in nuclear waste is increasingly harmful to nature with continuous development an...
Nitrogen-rich porous networks with additional polarity and basicity may serve as effective adsorbent...
Capturing volatile radionuclide iodine from nuclear and medical waste streams is an important enviro...
A pyrene-based metal-organic framework (MOF) SION-8 captured iodine (I-2) vapor with a capacity of 4...
Safe control and removal of radioactive iodine gases (I-129 and I-131) leaking from the accidents in...
© 2019 Elsevier Inc. In this work, three nanoporous carbon materials Z11-700, Z11-800 and Z11-900 we...
Management of hazardous waste is a pressing global concern, and the battle to ameliorate such waste ...
International audienceThe potential use of three metal-organic frameworks (MIL-53(Al), MIL-120(Al) a...
The effective and safe capture and storage of radioactive iodine (129I or 131I) is of significant im...
With the continuous development of nuclear energy, radioactive iodine in nuclear waste is becoming i...
Porous organic frameworks may be a kind of promising material to address environmental issues such a...
International audienceTo safeguard the development of nuclear energy, practical techniques for captu...
To safeguard the development of nuclear energy, practical techniques for capture and storage of radi...
Covalent organic frameworks (COF) with periodic porous structures and tunable functionalities are a ...
Using porous materials to cope with environmental issues is promising but remains a challenge especi...
Radioactive iodine in nuclear waste is increasingly harmful to nature with continuous development an...
Nitrogen-rich porous networks with additional polarity and basicity may serve as effective adsorbent...
Capturing volatile radionuclide iodine from nuclear and medical waste streams is an important enviro...
A pyrene-based metal-organic framework (MOF) SION-8 captured iodine (I-2) vapor with a capacity of 4...
Safe control and removal of radioactive iodine gases (I-129 and I-131) leaking from the accidents in...
© 2019 Elsevier Inc. In this work, three nanoporous carbon materials Z11-700, Z11-800 and Z11-900 we...
Management of hazardous waste is a pressing global concern, and the battle to ameliorate such waste ...
International audienceThe potential use of three metal-organic frameworks (MIL-53(Al), MIL-120(Al) a...
The effective and safe capture and storage of radioactive iodine (129I or 131I) is of significant im...