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Lithium-sulfur battery promises great potential to promote the reform of energy storage field. Modified functional interlayer on separator has been recognized as efficient method to promote battery performances, mainly focusing on the entrapment and catalytic effect toward lithium polysulfide, while the mass transfer property across the interlayers has not been carefully considered. Herein, a dense layer composed of ion-inserted metal-organic frameworks is used to facilitate mass transfer across the layer and ensure high polysulfides entrapment efficiency. In situ Raman study reveals that the dense functional layer blocks the transfer of Li ions, while the ion-inserted layer can accelerate the ion-transfer kinetics and avoid the ion depletion caused polarization. As a result, a specific capacity of 742 mAh g is obtained at 2 C, with the decay rate of 0.089% per cycle at 1 C over 600 cycles, demonstrating great potential for the application in advanced Li-S batteries.
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http://dx.doi.org/10.1002/smll.202104367 | DOI Listing |
J Colloid Interface Sci
September 2025
Shanxi Center of Technology Innovation for Advanced Power Battery Material, School of Chemistry and Chemical Engineering, Shanxi Normal University, Taiyuan 030032, China. Electronic address:
Against the backdrop of global carbon neutrality target driving the transformation of energy structure, alcohol fuel cells (AFCs) show great application potential; However, the sluggish kinetics of their anodic alcohol oxidation reaction hinders the commercialization of AFCs. Metallene is a novel 2D material with potential application prospect in the field of electrocatalysis. In this paper, PdMoW trimetallene has been successfully produced by a one-pot wet-chemical method, which displays a unique two-dimensional curved ultrathin graphene structure.
View Article and Find Full Text PDFJ Gynecol Obstet Hum Reprod
September 2025
Department of Epidemiology, Emory University Rollins School of Public Health, 1518 Clifton Rd, Atlanta, GA, USA.
Research Objective: Among singleton live births resulting from donor oocyte cycles, do perinatal outcomes differ between single (SET) and double embryo transfers (DET)?
Methods: We utilized a retrospective cohort of 610 recipients who had a singleton livebirth following nonidentified vitrified donor oocyte IVF cycle from a fertility clinic in the southeast US, 2008-2016. Perinatal outcomes included gestational age and birth weight. Preterm birth was defined as <37 weeks and low birth weight was defined as <2500 grams.
J Environ Radioact
September 2025
Forestry Solutions Technical Department, Asia Air Survey Co., Ltd., Kawasaki-City, Kanagawa, Japan.
Following the 2011 Fukushima Daiichi Nuclear Power Plant accident, radiocesium (Cs) was deposited across forested areas. While internal cycling is well known, lateral transfer via litterfall remains unclear. This study quantified Cs dispersal from Japanese cedar and deciduous broad-leaved forests using collectors set up to 20 m beyond the forest edge.
View Article and Find Full Text PDFJ Infect Public Health
September 2025
Department of Nursing, College of Nursing and Health Sciences, Jazan University, Jazan 82911, Saudi Arabia; School of Medicine, Universidad Espiritu Santo, Samborondon 091952, Ecuador. Electronic address:
Introduction: Hajj is the largest annual mass gathering in the world, attracting more than 2 million pilgrims from 184 countries. Adverse climatic conditions and close proximity of pilgrims during Hajj rituals create a facilitating environment for the transmission of infectious agents, including multi-drug resistant organisms. Although, several individual reports have been published on specific type of infections, there is a paucity of published work reflecting the overall picture of the prevalence of pathogenic infections during Hajj.
View Article and Find Full Text PDFInt J Biol Macromol
September 2025
Department of Chemical Engineering, Institute of Chemical Technology, Matunga (E), Mumbai, 400019, India. Electronic address:
Integrating multi-enzyme systems within metal-organic frameworks (MOFs) has garnered significant attention in biocatalysis due to their tunable structural properties and ability to enhance enzyme performance in cascade reactions. The unique features of MOFs, such as well-defined pore apertures, tailorable compositions, and high loading capacity, facilitate the design of robust multi-enzyme bio-composites with enhanced recyclability and specificity. This review explores systematic approaches for the compartmentalization and positional co-immobilization of multiple enzymes within MOFs, focusing on two key strategies: (i) layer-by-layer assembly and (ii) pore-engineered compartmentalization.
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