Results 251 to 260 of about 890,100 (287)
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ZIF-67 on Sulfur-Functionalized Graphene Oxide for Lithium–Sulfur Batteries
Inorganic Chemistry, 2023How to overcome the problem of fast capacity fading and low sulfur utilization is the key to promote the practical applications of lithium-sulfur (Li-S) batteries. Based on the fact that sulfur-functionalized graphene oxide (GO-S) can avoid the loss of sulfur/polysulfides through the strong C-S interaction, and the zeolitic imidazolate framework (ZIF ...
Mingqi Xu +6 more
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Chemical Engineering Science, 2015
Abstract New approaches and materials for inexpensive carbon capture are important areas of research. Herein, we report a new material (i.e., zeolitic imidazolate framework-67 (ZIF-67)/glycol-2-methylimidazole (mIm) slurry) that can be used to capture CO 2 similar to a liquid absorbent, and ZIF-67 was synthesized on a pilot scale.
Yong Pan +9 more
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Abstract New approaches and materials for inexpensive carbon capture are important areas of research. Herein, we report a new material (i.e., zeolitic imidazolate framework-67 (ZIF-67)/glycol-2-methylimidazole (mIm) slurry) that can be used to capture CO 2 similar to a liquid absorbent, and ZIF-67 was synthesized on a pilot scale.
Yong Pan +9 more
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Water Environment Research
Abstract This study focuses on the synthesis of composite materials using Zeolitic imidazolate frameworks (ZIF‐67) nanoparticles as an effective adsorbent, along with different concentrations (2–10%) of thermally expanded vermiculite (EV) as a low‐cost and natural adsorbent substrate.
Salman Ahmadipouya, Hossein Molavi
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Abstract This study focuses on the synthesis of composite materials using Zeolitic imidazolate frameworks (ZIF‐67) nanoparticles as an effective adsorbent, along with different concentrations (2–10%) of thermally expanded vermiculite (EV) as a low‐cost and natural adsorbent substrate.
Salman Ahmadipouya, Hossein Molavi
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Comparative study of carbon fiber structure on the electrocatalytic performance of ZIF-67
Analytica Chimica Acta, 2017In this study, novel ZIF-67@carbon fiber composites were fabricated by a simple and facile approach. In order to explore the influence of carbon fiber structure on enhancing the electrocatalytic efficiency of the ZIF-67, different structural carbon fibers (hollow porous carbon fiber (PCF) and solid carbon fiber (SCF)) were used for preparing ZIF-67 ...
Xiaogeng, Feng +4 more
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Inorganic Chemistry
The development of heterogeneous catalysts with abundant active sites is pivotal for enhancing the efficiency of photothermal CO2 conversion. Herein, we report the construction of Co2N0.67@ZIF-67 through the in situ pyrolysis of ZIF-67 under low-temperature pyrolysis conditions.
Lingjing Jiang +6 more
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The development of heterogeneous catalysts with abundant active sites is pivotal for enhancing the efficiency of photothermal CO2 conversion. Herein, we report the construction of Co2N0.67@ZIF-67 through the in situ pyrolysis of ZIF-67 under low-temperature pyrolysis conditions.
Lingjing Jiang +6 more
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Rapid room temperature synthesis and CO2 uptake performance of nanocrystalline ZIF-67 and Ni@ZIF-67
Inorganic Chemistry Communications, 2023Vema Reddy Bheeram +2 more
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European Journal of Inorganic Chemistry, 2017
Two types of magnetic nanocomposites, Co‐carbon composite (Co@C) and Zn/Co‐carbon composite (Zn/Co@C), were synthesized by one‐step calcinations of hollow Co‐ZIF (ZIF‐67) and Zn/Co‐ZIF (ZIF‐67@ZIF‐8) (ZIF = zeolitic imidazolate framework), as well as applied as adsorbents in the reduction of Rhodamine B (RhB).
Haoyang Zhao, Ying Wang, Lang Zhao
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Two types of magnetic nanocomposites, Co‐carbon composite (Co@C) and Zn/Co‐carbon composite (Zn/Co@C), were synthesized by one‐step calcinations of hollow Co‐ZIF (ZIF‐67) and Zn/Co‐ZIF (ZIF‐67@ZIF‐8) (ZIF = zeolitic imidazolate framework), as well as applied as adsorbents in the reduction of Rhodamine B (RhB).
Haoyang Zhao, Ying Wang, Lang Zhao
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In-situ grown ZIF-67@chitosan (ZIF-67@CS) for highly efficient removal of Pb(II) from water
Journal of Solid State Chemistry, 2022Qiuping Fu +8 more
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