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Synthesis of ZIF-7, ZIF-8, ZIF-67 and ZIF-L from recycled mother liquors
ZIF-8, ZIF-L, ZIF-7 and ZIF-67 were synthesized from fresh and recycled synthesis solutions. ZIF-8, ZIF-L and ZIF-67 includes Zn2+, while ZIF-67 includes Co2+. ZIF-67 was synthesized in dimethyl formamide, while the others in water.
Halil Kalıpçılar, Berna Topuz
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55775589In the present work, the synthesis of ZIF-67/PANI and ZIF-67/PPy composites, derived from polyaniline (PANI), polypyrrole (PPy), and ZIF-67 offers considerable potential in the application of supercapacitors.
Vikas N. Kendre +6 more
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Electrochemical and NMR Characterization of ZIF-67
ECS Meeting Abstracts, 2023Metal Organic Frameworks (MOFs) are attractive materials for their tunable porosities and chemistries. Zeolitic Imidazolate Frameworks (ZIF) are a class of MOFs recognized for their relative ease in synthesis and stability. In this work we study ZIF-67 for energy storage applications. We use a host of characterization techniques, including XRD, BET,
Carlos M Hangarter +6 more
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ZIF-67-based catalysts for oxygen evolution reaction
Nanoscale, 2021As a new type of crystalline porous material, the imidazole zeolite framework (ZIF) has attracted widespread attention due to its ultra-high surface area, large pore volume, and unique advantage of easy functionalization.
Hui Wen +4 more
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Environmental Monitoring and Assessment, 2023
Heavy metals are ubiquitous in water bodies as a result of anthropogenic activities and over time they accumulate in body thus posing serious health problems. Therefore, it is essential to improve sensing performance, for determination of heavy metal ions (HMIs), of electrochemical sensors.
Mariam, Ghafoor +5 more
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Heavy metals are ubiquitous in water bodies as a result of anthropogenic activities and over time they accumulate in body thus posing serious health problems. Therefore, it is essential to improve sensing performance, for determination of heavy metal ions (HMIs), of electrochemical sensors.
Mariam, Ghafoor +5 more
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ECS Meeting Abstracts, 2022
Metal-Organic Frameworks (MOFs) have much interest in the catalytic research community but are less attracted by the sensor society for their poor conductivity. In the present work, we report a novel Zeolitic Imidazolate Framework-67 (ZIF-67) and MWCNT’s-ZIF-67 nanocomposites based on non-enzymatic electrochemical sensors for sensing uric acid in ...
Dola Sundeep, Eswaramoorthy K Varadharaj
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Metal-Organic Frameworks (MOFs) have much interest in the catalytic research community but are less attracted by the sensor society for their poor conductivity. In the present work, we report a novel Zeolitic Imidazolate Framework-67 (ZIF-67) and MWCNT’s-ZIF-67 nanocomposites based on non-enzymatic electrochemical sensors for sensing uric acid in ...
Dola Sundeep, Eswaramoorthy K Varadharaj
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Kinetics of transformation on ZIF-67 crystals
Journal of Crystal Growth, 2015Abstract Herein we report the structural evolution of ZIF-67 as a function of time at room temperature. We have identified the different stages of ZIF-67 formation (nucleation, crystallization, growth, and steady state periods) and elucidated its kinetics of transformation.
Xuhui Feng, Moises A. Carreon
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Formation mechanism and properties of NiCoFeLDH@ZIF-67 composites
Chinese Chemical Letters, 2021Abstract Metal–organic frameworks (MOFs) have a regular porous structure and high porosity, which make them ideal electrode materials for supercapacitors. However, their capacitance performance is greatly limited by their poor conductivity. In this study, a multi-component hierarchical structure was obtained by growing NiCoFeLDH on the surface of ZIF-
Huijie Zhou +5 more
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Fabrication of an electrochemical mesalazine sensor based on ZIF-67
Measurement, 2020Abstract This paper describes the application of ZIF-67 nanoparticles for carbon paste electrode (CPE) modification for sensitive voltammetric detection of mesalazine (MSA). The characterization of as-synthesized ZIF-67 nanoparticles was investigated by different techniques.
Esmail Sohouli +4 more
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ChemNanoMat, 2017
AbstractAdvanced hybrid nanomaterials tailored with unique morphologies and multiple functions can be synthesized by the controllable integration of two or more well‐designed components. Distinctively shaped metal cores with well‐defined coordination polymer shells can lead to synergistic structural properties in the resultant hybrid materials. Herein,
Hien Duy Mai +4 more
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AbstractAdvanced hybrid nanomaterials tailored with unique morphologies and multiple functions can be synthesized by the controllable integration of two or more well‐designed components. Distinctively shaped metal cores with well‐defined coordination polymer shells can lead to synergistic structural properties in the resultant hybrid materials. Herein,
Hien Duy Mai +4 more
openaire +1 more source

