Results 71 to 80 of about 341,640 (266)
Ionogels dynamically and functionally couple ionic liquids with polymer networks, enabling multiscale programmable deformation and motion under electrical, magnetic, optical, thermal, humidity, and chemical stimuli. This article systematically elucidates the constituent components, structural design, and multiscale actuation mechanisms of ionogel ...
Dezhou Cao +5 more
wiley +1 more source
Nickel foam—one material, two faces, and several versatile roles depending on electrolytic conditions. For more than 50 years, nickel foam electrodes have served in electrosynthesis as powerful and readily available electrode materials. Due to their inexpensive nature and easy handling, they have been widely employed.
Rok Narobe +2 more
wiley +1 more source
Repolarization adaptation to rapid change in heart rate in human models – a review
Abstract figure legend This review focuses on non‐invasive assessment of repolarization duration and dispersion (heterogeneity) adaptation to change in heart rate (HR). HR was increased incrementally by left atrial pacing during an electrophysiology (EP) study and by a bolus injection of atropine and in a step up/down fashion by repeated right atrial ...
Lennart Bergfeldt +5 more
wiley +1 more source
A catalyst based on zero-valent iron nanoparticles (nZVI) supported by zeolite Y (zeolite Y-nZVI) was synthesized to improve the performance of the heterogeneous electro-Fenton-like process for treating a toxic pesticide wastewater with pH of 6.
Mohsen Mohammadi +2 more
doaj +1 more source
ABSTRACT The limitations of traditional direct current–electrocoagulation (DC–EC) in wastewater treatment encompass electrode passivation, high energy consumption and substantial sludge generation. Alternating current–EC, often known as AC–EC, is a technique that was developed to overcome these concerns. This study sets out to compare the effectiveness
Perumal Asaithambi +7 more
wiley +1 more source
Electrodes based on carbon materials modified with iron oxides or metallic iron have attracted much attention in the field of heterogeneous electro-Fenton process for the removal of various organic pollutants.
Abdulgalim Isaev +3 more
doaj +1 more source
Background and purpose: Microbial electro-Fenton system as a novel technology can be employed in removal of resistant organic pollutants along with generation of renewable electrical energy through the activity of anaerobic microorganisms.
Fatemeh Soltani +4 more
doaj
Application of self-supplying iron cathode prepared by gas sludge in Electro-Fenton
This study is a new method for recovery and utilization of waste gas sludge from iron and steel industry. Because the gas sludge contains iron and carbon elements, the gas sludge is prepared into an Electro-Fenton (E-Fenton) cathode in this study.
Lichao Zhou +4 more
doaj +1 more source
Mesoporous sulfur-modified metal oxide cathodes for efficient electro-Fenton systems
Development of cathode materials with high activity, stability, and wide operating pH range is crucial for electro-Fenton reactions. Herein, mesoporous sulfur-modified metal oxides were coated onto stainless steel meshes and applied as a cathode to ...
Thao Thi Le +6 more
doaj +1 more source
The incubation of primary astrocytes with fAuNCs‐BSA induces: (A) long‐term effects including fAuNCs‐BSA internalization, red cell fluorescence, differentiation, upregulation of Ca2+ signaling, Cl‐current, and cell volume regulation. B) Short‐term (200 ms) stimulation with UV LED light increases in Ca2+ signaling and inhibition of K+ current. Astrocyte
Roberta Fabbri +21 more
wiley +1 more source

