98%
921
2 minutes
20
The abundance of raw materials is a significant advantage that positions sodium-ion batteries (SIBs) as a promising energy storage solution for the future. However, the low cycle efficiency and poor rate capacity of cathode materials have hindered the commercialization of SIBs, prompting extensive research efforts to address these challenges. Ion doping into the material structure is considered to be an effective, simple, and scalable approach to enhancing the electrical performance of cathode materials. In this work, B and F elemental ions were selectively doped into the structure of sodium-lithium-manganese-cobalt oxide material via the sol-gel method combined with calcination. The effects of B and F ion doping on the properties of the obtained materials exhibited distinct variations, particularly in the electrochemical performance. While the B-doped material (B-NLMC) exhibited a specific capacity of up to 166.5 mAh g at a current density of 10 mA g and maintained 72.1% capacity after 100 cycles, the material simultaneously doped with B and F ions (BF-NLMC) demonstrated lower specific capacity and cycling efficiency compared to B-NLMC. However, the BF-NLMC material exhibited significantly improved rate capability, delivering a specific capacity of up to approximately 80 mAh g at a high current density of 200 mA g. Obviously, this research offers valuable insights into diversifying doping strategies to enhance the electrochemical performance of cathode materials, contributing to the advancement of SIB technology.
Download full-text PDF |
Source |
---|---|
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11603271 | PMC |
http://dx.doi.org/10.1021/acsomega.4c06248 | DOI Listing |
Cereb Cortex
August 2025
Department of Psychology, University of Lübeck, Ratzeburger Allee 160, Lübeck 23562, Germany.
The human auditory system must distinguish relevant sounds from noise. Severe hearing loss can be treated with cochlear implants (CIs), but how the brain adapts to electrical hearing remains unclear. This study examined adaptation to unilateral CI use in the first and seventh months after CI activation using speech comprehension measures and electroencephalography recordings, both during passive listening and an active spatial listening task.
View Article and Find Full Text PDFRev Med Suisse
August 2025
Service de cardiologie, HFR Fribourg - Hôpital cantonal, 1752 Villars-sur-Glâne.
Atrial fibrillation (AF) is common in the elderly and often incidental. While anticoagulation is facilitated by risk-stratification scores, rate versus rhythm-control in the elderly and likely asymptomatic population remain challenging. We report an 80-year-old male with newly diagnosed slow AF, referred for an electrical cardioversion after amiodarone loading.
View Article and Find Full Text PDFSmall
September 2025
School of Mechanical Engineering, Yonsei University, 50, Yonsei-ro, Seodaemun-gu, Seoul, 03722, Republic of Korea.
Core-shell electrodes provide a potential and innovative approach for significantly enhancing the performance and capacity of supercapacitors (SCs) by combining two distinct materials. The capabilities of these advanced electrodes surpass those of conventional single electrodes. Specifically, these exhibit better energy storage, higher power density, and improved overall performance.
View Article and Find Full Text PDFACS Electrochem
September 2025
Department of Chemistry and Chemical Engineering, Chalmers University of Technology, Kemigården 4, Gothenburg 412 96, Sweden.
Carbon fiber nanotip electrodes (CFNEs) are crucial for electrochemical recordings of neurotransmission release in confined spaces, such as synapses and intracellular measurements. However, fabricating CFNEs with small surface area to minimize noise remains challenging due to inconsistent tip size control, low reproducibility, and low fabrication success rate. Here, we present a reliable, user-friendly method with high reproducibility and success rate for precise CFNE fabrication using microscopy-guided electrochemical etching of cylindrical carbon fiber microelectrodes in a potassium hydroxide droplet.
View Article and Find Full Text PDFACS Electrochem
September 2025
Department of Chemistry, University of Warwick, Coventry CV4 7AL, United Kingdom.
The surface structure of an electrocatalyst plays a crucial role in determining the activity. As a model system, gold has been widely investigated as an electro-oxidation catalyst, although there has been much less research on the oxygen evolution reaction (OER) in the potential region of gold oxidation. Here, we combine voltammetric scanning electrochemical cell microscopy (SECCM) and electron backscatter diffraction (EBSD), at different spatial and angular resolutions, respectively, to correlate the local crystallographic structure of polycrystalline goldfocusing on grains close to (113), (011), (114), and (111) orientationswith the electrocatalytic behavior for the OER.
View Article and Find Full Text PDF