The Current Density on Electrosynthesis of Hydroxyapatite with Bipolar Membrane
Synthesis of hydroxyapatite by electrochemical method was has been successfully done. The novelty of this research is used of the bipolar membrane to separate electrolysis chamber. The bipolar membrane is used to keep the cations still around the cathode
Nur Adrian +6 more
doaj +3 more sources
Electrochemical Dehydration in Flow: Fatty Acid Nitriles From Their Carboxamides
We established a sustainable and scalable electrochemical dehydration of highly lipophilic amides to their nitriles in recirculating flow electrolysis conditions, expanding on our previously published work on the electrochemical dehydration of ...
Enrico Lunghi +2 more
doaj +2 more sources
Part t:- An Investigation of the Mechanism of Electrosynthetic and Allied Reactions.Part 2:- The Electrosynthesis of Four New Dibasic Acids of the Oxalic Acid Series, with a Discussion on the Melting Points of this ...
Fairweather, David Alexander Whyte
core +3 more sources
Understanding and Regulating C-N Coupling Pathways for Electrocatalytic Urea Synthesis From CO<sub>2</sub> and NO<sub>3</sub> <sup>-</sup>/NO<sub>2</sub>. [PDF]
Understanding and regulating C–N coupling is central to electrocatalytic urea synthesis from CO2 and NO3−/NO2−. This review outlines representative coupling pathways, summarizes carbon‐ and nitrogen‐side intermediate regulation strategies, and highlights in situ/operando tools for mechanistic clarification and catalyst design. ABSTRACT Electrocatalytic
Chen X +5 more
europepmc +2 more sources
Linker modulated peroxide electrosynthesis using metal-organic nanosheets [PDF]
The electrochemical synthesis of hydrogen peroxide (H2O2), a widely used oxidant, is emerging as a green alternative to the conventional anthraquinone method.
Kiran, Kuruvinashetti +1 more
core +1 more source
Organic electrosynthesis: from academia to industry [PDF]
The growing impetus to develop greener and more cost-efficient synthetic methods has prompted chemists to look for new ways to activate small organic molecules.
Lam, Kevin +4 more
core +2 more sources
Interface-Enhanced Electrochemical Epoxidation Over a Core-Shell Nanozeolite TS-1@Mn-N-C Catalyst. [PDF]
Core–shell interface of TS‐1@Mn‐N‐C enables in situ generation of high‐concentration H2O2 and its spatially confined activation toward epoxidation‐active η‐Ti‐OOH species, leading to highly efficient and continuous electrochemical epoxidation. The work successfully addresses the key challenge of inefficient mass transfer and slow kinetics caused by ...
Zhang W +7 more
europepmc +2 more sources
Bridging Lab and Industry with Flow Electrochemistry
Summary: A revitalization of organic electrosynthesis has incited the organic chemistry community to adopt electrochemistry as a green and cost-efficient method for activating small molecules to replace highly toxic and expensive redox chemicals. However,
Nour Tanbouza +2 more
doaj +1 more source
Design Guidelines for Membrane-separated Organic Electrosynthesis: The Case of Adiponitrile Production [PDF]
The on-going efforts to transition from thermal to electricity-driven processes can enable the easy integration of renewable energy sources and sustainable practices in chemical manufacturing.
Daniela Blanco (6673075) +7 more
core +1 more source
Special Issue "Advances in Organic Electrosynthesis"
Dear Colleagues,Organic electrosynthesis has existed for nearly 200 years, since Faraday’s pioneering decarboxylative conversion of acetic acid to ethane in the 19th century; however, electrosynthesis has not had a sustained impact on the field of ...
Jones, Alan M; id_orcid
core +4 more sources

