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Photocatalytic and electrocatalytic generation of hydrogen peroxide: principles, catalyst design and performance
Y Guo, X Tong, N Yang - Nano-Micro Letters, 2023 - Springer
Abstract Hydrogen peroxide (H2O2) is a high-demand organic chemical reagent and has
been widely used in various modern industrial applications. Currently, the prominent method …
been widely used in various modern industrial applications. Currently, the prominent method …
Electrospun nanofiber-based glucose sensors for glucose detection
Y Du, X Zhang, P Liu, DG Yu, R Ge - Frontiers in Chemistry, 2022 - frontiersin.org
Diabetes is a chronic, systemic metabolic disease that leads to multiple complications, even
death. Meanwhile, the number of people with diabetes worldwide is increasing year by year …
death. Meanwhile, the number of people with diabetes worldwide is increasing year by year …
Electrochemical generation of hydrogen peroxide from a zinc gallium oxide anode with dual active sites
Electrochemical water oxidation enables the conversion of H2O to H2O2. It holds distinct
advantages to the O2 reduction reaction, which is restricted by the inefficient mass transfer …
advantages to the O2 reduction reaction, which is restricted by the inefficient mass transfer …
Catalysis for e-Chemistry: Need and Gaps for a Future De-Fossilized Chemical Production, with Focus on the Role of Complex (Direct) Syntheses by Electrocatalysis
The prospects, needs and limits in current approaches in catalysis to accelerate the
transition to e-chemistry, where this term indicates a fossil fuel-free chemical production, are …
transition to e-chemistry, where this term indicates a fossil fuel-free chemical production, are …
Pairing Oxygen Reduction and Water Oxidation for Dual‐Pathway H2O2 Production
Abstract Hydrogen peroxide (H2O2) is a crucial chemical applied in various industry sectors.
However, the current industrial anthraquinone process for H2O2 synthesis is carbon …
However, the current industrial anthraquinone process for H2O2 synthesis is carbon …
Effective hydrogen peroxide production from electrochemical water oxidation
The two-electron water oxidation reaction (2 e–WOR) is progressively gaining traction as a
sustainable approach for in situ electrosynthesis of hydrogen peroxide (H2O2). State-of-the …
sustainable approach for in situ electrosynthesis of hydrogen peroxide (H2O2). State-of-the …