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Hydrogen peroxide

About: Hydrogen peroxide is a research topic. Over the lifetime, 42583 publications have been published within this topic receiving 1043732 citations. The topic is also known as: H2O2 & dioxidane.


Papers
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Journal ArticleDOI
01 Apr 2018
TL;DR: In this paper, a mild thermal reduction of graphene oxide was used to form hydrogen peroxide from oxygen, achieving state-of-the-art performance at low overpotentials.
Abstract: Electrochemical oxygen reduction has garnered attention as an emerging alternative to the traditional anthraquinone oxidation process to enable the distributed production of hydrogen peroxide. Here, we demonstrate a selective and efficient non-precious electrocatalyst, prepared through an easily scalable mild thermal reduction of graphene oxide, to form hydrogen peroxide from oxygen. During oxygen reduction, certain variants of the mildly reduced graphene oxide electrocatalyst exhibit highly selective and stable peroxide formation activity at low overpotentials (<10 mV) under basic conditions, exceeding the performance of current state-of-the-art alkaline catalysts. Spectroscopic structural characterization and in situ Raman spectroelectrochemistry provide strong evidence that sp2-hybridized carbon near-ring ether defects along sheet edges are the most active sites for peroxide production, providing new insight into the electrocatalytic design of carbon-based materials for effective peroxide production. Electrochemical routes for the production of hydrogen peroxide would reduce the waste inherent in the current anthraquinone process, and also make distributed and on-site production more feasible. Here, inexpensive reduced graphene oxide is proven to be a stable and selective catalyst for oxygen reduction at remarkably low overpotentials.

588 citations

Journal ArticleDOI
TL;DR: Fenton reagent has been used to test the degradation of different organic compounds in aqueous solution and eliminates the toxic substances and increases the biodegradability of the treated water (measured as the ratio BOD5/COD).

588 citations

BookDOI
05 Nov 1999
TL;DR: An introduction to the preparation and properties of hydrogen peroxide can be found in this article, along with a discussion of the application of hydrogen Peroxide for the synthesis of fine chemicals.
Abstract: An introduction to the preparation and properties of hydrogen peroxide The activation of hydrogen peroxide using inorganic and organic species The application of hydrogen peroxide for the synthesis of fine chemicals The heterogeneous activation and application of hydrogen peroxide The environmental application of hydrogen peroxide Miscellaneous uses for hydrogen peroxide technology

584 citations

Journal ArticleDOI
TL;DR: The current review examined the role of oxidative stress in AD, a process referring to an imbalance between antioxidants and oxidants in favour of oxidants that can occur as a result of increased free radicals or a decrease in antioxidant defense.
Abstract: Alzheimer's disease (AD) is the most common cause of disability in individuals aged >65 years worldwide. AD is characterized by the abnormal deposition of amyloid β (Aβ) peptide, and intracellular accumulation of neurofibrillary tangles of hyperphosphorylated τ protein and dementia. The neurotoxic oligomer Aβ peptide, which is the neuropathological diagnostic criterion of the disease, together with τ protein, are mediators of the neurodegeneration that is among the main causative factors. However, these phenomena are mainly initiated and enhanced by oxidative stress, a process referring to an imbalance between antioxidants and oxidants in favour of oxidants. This imbalance can occur as a result of increased free radicals or a decrease in antioxidant defense, free radicals being a species that contains one or more unpaired electrons in its outer shell. The major source of potent free radicals is the reduction of molecular oxygen in water, that initially yields the superoxide radical, which produces hydrogen peroxide by the addition of an electron. The reduction of hydrogen peroxide produces highly reactive hydroxyl radicals, termed reactive oxygen species (ROS) that can react with lipids, proteins, nucleic acids, and other molecules and may also alter their structures and functions. Thus, tissues and organs, particularly the brain, a vulnerable organ, are affected by ROS due to its composition. The brain is largely composed of easily oxidizable lipids while featuring a high oxygen consumption rate. The current review examined the role of oxidative stress in AD.

583 citations

BookDOI
01 Jan 1992
TL;DR: The use of Polyoxometalates in Reactions with Hydrogen Peroxide has been investigated in this paper, where the use of polyoxometals in reaction with hydrogen peroxide is discussed.
Abstract: 1: Introduction and Activation Principles.- 2: Hydrogen Peroxide: Manufacture and Industrial Use for Production of Organic Chemicals.- 3: Activation of Hydrogen Peroxide by Organic Compounds.- 4: Fenton Type Activation and Chemistry of Hydroxyl Radical.- 5: Activation of Hydrogen Peroxide with Biomimetic Systems.- 6: Nucleophilic and Electrophilic Catalysis with Transition Metal Complexes.- 7: Peroxometal Complexes Derived from Hydrogen Peroxide. Some Applications in Organic Synthesis.- 8: The Use of Polyoxometalates in Reactions with Hydrogen Peroxide.

581 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
20242
20231,644
20223,392
2021897
20201,112
20191,301