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Metalation of metal–organic frameworks: fundamentals and applications
Metalation of metal–organic frameworks (MOFs) has been developed as a prominent
strategy for materials functionalization for pore chemistry modulation and property …
strategy for materials functionalization for pore chemistry modulation and property …
Nanozyme‐enhanced electrochemical biosensors: mechanisms and applications
Nanozymes, as innovative materials, have demonstrated remarkable potential in the field of
electrochemical biosensors. This article provides an overview of the mechanisms and …
electrochemical biosensors. This article provides an overview of the mechanisms and …
Strategies, advances, and challenges associated with the use of graphene-based nanocomposites for electrochemical biosensors
Graphene is an intriguing two-dimensional honeycomb-like carbon material with a unique
basal plane structure, charge carrier mobility, thermal conductivity, wide electrochemical …
basal plane structure, charge carrier mobility, thermal conductivity, wide electrochemical …
DNAzyme-based biosensors: Immobilization strategies, applications, and future prospective
Since their discovery almost three decades ago, DNAzymes have been used extensively in
biosensing. Depending on the type of DNAzyme being used, these functional …
biosensing. Depending on the type of DNAzyme being used, these functional …
Performance of cross-linked chitosan-zeolite composite adsorbent for removal of Pb2+ ions from aqueous solutions: experimental and Monte Carlo simulations …
In this study, we investigated the performance of a cross-linked chitosan (Ch)-zeolite (Z)
composite (Ch-Z) adsorbent for the removal of Pb 2+ ions from water. The results revealed …
composite (Ch-Z) adsorbent for the removal of Pb 2+ ions from water. The results revealed …
[HTML][HTML] Insights into recent advances of chitosan-based adsorbents for sustainable removal of heavy metals and anions
With globally increased human population and industrialization, the natural sources of water
are reduced and then contaminated. Therefore, development of advanced technologies for …
are reduced and then contaminated. Therefore, development of advanced technologies for …
Screening, identification, and application of nucleic acid aptamers applied in food safety biosensing
Background Nucleic acid aptamers, defined as small functional nucleic acids that can
selectively bind to a specific target, have become one of the main bio-recognition elements …
selectively bind to a specific target, have become one of the main bio-recognition elements …
A sulfur-containing capsule-based metal-organic electrochemical sensor for super-sensitive capture and detection of multiple heavy-metal ions
Abstract Development of an effective way for super-sensitive capture and sensing of heavy
metal ions (HMIs) is a great challenge because they are extremely toxic to public health and …
metal ions (HMIs) is a great challenge because they are extremely toxic to public health and …
Electrochemical aptasensor based on gold modified thiol graphene as sensing platform and gold-palladium modified zirconium metal-organic frameworks nanozyme …
Gold modified thiol graphene (Au@ HS-rGO) was prepared and applied as sensing platform
for constructing the electrochemical aptasensor. While gold-palladium modified zirconium …
for constructing the electrochemical aptasensor. While gold-palladium modified zirconium …
Adsorption mechanism and removal efficiency of magnetic graphene oxide-chitosan hybrid on aqueous Zn (II)
C Bulin - International Journal of Biological Macromolecules, 2023 - Elsevier
Magnetic architecture incorporating graphene-chitosan has demonstrated encouraging
application in wastewater purification. Herein, a ternary hybrid based on Fe 3 O 4-graphene …
application in wastewater purification. Herein, a ternary hybrid based on Fe 3 O 4-graphene …