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Electrochemically reduced graphene oxide: Preparation, composites, and applications
The reduction of graphene oxide is one of the most important methods for the preparation of
large-scale, high-quality, and low-cost graphene. Among various reduction methods, the …
large-scale, high-quality, and low-cost graphene. Among various reduction methods, the …
Advanced review of graphene-based nanomaterials in drug delivery systems: Synthesis, modification, toxicity and application
Q Zhang, Z Wu, N Li, Y Pu, B Wang, T Zhang… - Materials Science and …, 2017 - Elsevier
The discovery of graphene, a notable achievement in the field of novel carbon
nanomaterials, has triggered the worldwide exploration of the biomedical applications of this …
nanomaterials, has triggered the worldwide exploration of the biomedical applications of this …
Recent advances in electrochemical nonenzymatic hydrogen peroxide sensors based on nanomaterials: a review
The development of efficient electrochemical hydrogen peroxide (H 2 O 2) sensors has
received great attention due to the significance of H 2 O 2 in biological systems and its …
received great attention due to the significance of H 2 O 2 in biological systems and its …
Progress in utilisation of graphene for electrochemical biosensors
AT Lawal - Biosensors and Bioelectronics, 2018 - Elsevier
This review discusses recent graphene (GR) electrochemical biosensor for accurate
detection of biomolecules, including glucose, hydrogen peroxide, dopamine, ascorbic acid …
detection of biomolecules, including glucose, hydrogen peroxide, dopamine, ascorbic acid …
Non-enzymatic hydrogen peroxide electrochemical sensors based on reduced graphene oxide
The determination of hydrogen peroxide (H 2 O 2) plays a crucial role in many industrial
applications as well as clinical diagnoses. Electrochemical sensing techniques can provide …
applications as well as clinical diagnoses. Electrochemical sensing techniques can provide …
Anthraquinone functionalized ionic liquid based disposable electrochemical sensor for the enzyme-free detection of hydrogen peroxide
A simple and selective enzyme-free electrochemical sensor for H 2 O 2 has been designed
and fabricated using ionic liquid (IL) tagged anthraquinone (AQ) modified electrode (AQ-PF …
and fabricated using ionic liquid (IL) tagged anthraquinone (AQ) modified electrode (AQ-PF …
Electrochemical determination of 2, 4, 6-trinitrophenol using a hybrid film composed of a copper-based metal organic framework and electroreduced graphene oxide
Y Wang, W Cao, L Wang, Q Zhuang, Y Ni - Microchimica Acta, 2018 - Springer
A metal organic framework (MOF) of the type copper (II)-1, 3, 5-benzenetricarboxylic acid
(Cu-BTC) was electrodeposited on electroreduced graphene oxide (ERGO) placed on a …
(Cu-BTC) was electrodeposited on electroreduced graphene oxide (ERGO) placed on a …
Synergism of holmium orthovanadate/phosphorus-doped carbon nitride nanocomposite: nonenzymatic electrochemical detection of hydrogen peroxide
Develo** efficient and robust electrode materials for electrochemical sensors is critical for
real-time analysis. In this paper, a hierarchical holmium vanadate/phosphorus-doped …
real-time analysis. In this paper, a hierarchical holmium vanadate/phosphorus-doped …
An Innovative SbIII–WVI-Cotemplated Antimonotungstate with Potential in Sensing Paroxetine Electrochemically
Y Sun, S **e, Z Tang, J Zhao, L Chen - Inorganic Chemistry, 2024 - ACS Publications
Advances in polyoxometalate (POM) self-assembly chemistry are always accompanied by
new developments in molecular blocks. The exploration and discovery of uncommon …
new developments in molecular blocks. The exploration and discovery of uncommon …
A base-stable metal-organic framework for sensitive and non-enzymatic electrochemical detection of hydrogen peroxide
Stability of metal-organic frameworks (MOFs) in aqueous medium and extreme solution
conditions (acidic or basic) are important for the development of stable, reproducible, and …
conditions (acidic or basic) are important for the development of stable, reproducible, and …