Cyclized polyacrylonitrile (cPAN) with decently flexible, elastic, and conductive properties is a promising substrate or binder material for flexible devices. However, it is infeasible to accommodate the large volume expansion and contribute the exceptional rate capability of silicon anodes in lithium-ion batteries only counting on the limited elasticity and conductivity of cPAN. Herein, we report a robust silicon/carbon-cPAN-graphene (SC-CP-G) composite membrane with excellent flexibility based on a multifunctional structure design in multiple dimensions, which can be used as a free-standing integrated anode for lithium ion batteries. In this integrated electrode, silicon nanoparticles are encapsulated in porous carbon with in situ formed confined space, and the silicon/carbon particles are further embedded in cPAN nanofibers, which are inextricably interwoven with a reduced graphene oxide film, forming an interpenetrating network architecture. The unique hierarchical and functional structure design greatly improves the mechanical performance, cycling stability, and capacity accessibility of silicon electrodes, delivering a specific capacity of 1847 mA h g at 2 A g and a capacity retention of 87% after 150 cycles.
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http://dx.doi.org/10.1021/acsami.2c09668 | DOI Listing |
J Chem Inf Model
January 2025
Department of Computer Science and Technology, Shantou University, Shantou 515063, China.
The human microbiota may influence the effectiveness of drug therapy by activating or inactivating the pharmacological properties of drugs. Computational methods have demonstrated their ability to screen reliable microbe-drug associations and uncover the mechanism by which drugs exert their functions. However, the previous prediction methods failed to completely exploit the neighborhood topologies of the microbe and drug entities and the diverse correlations between the microbe-drug entity pair and the other entities.
View Article and Find Full Text PDFJAMA Surg
January 2025
Department of Surgery, University of Michigan, Ann Arbor.
Importance: Growing trends in private equity acquisition of acute care hospitals in the US have motivated investigations into quality of care delivered at these health centers. While some studies have explored comparative outcomes for high-acuity medical conditions, care trends and outcomes of complex surgical procedures, such as esophagectomy, at private equity-acquired hospitals is unknown.
Objective: To compare structural characteristics and postoperative outcomes following esophagectomy between private equity-acquired and nonacquired health centers.
J Fam Psychol
January 2025
Department of Social and Health Sciences, Bar-Ilan University.
Subjective views of aging (VoA) play a crucial role in shaping individuals' physical, mental, and overall well-being. While past research has primarily focused on individual perspectives, recent literature suggests the development of VoA within interpersonal relationships. This study introduces a new scale, the Views of Couple Joint Aging (VoCJA), examining VoA related to the aging process within couple partnerships.
View Article and Find Full Text PDFPsicol Reflex Crit
January 2025
Departamento de Psicología. Facultad de Educación, Ciencias Sociales y Humanidades, Universidad de La Frontera, Temuco, Chile.
Background: Social support is relevant to studying well-being, quality of life, and health during aging, particularly in people over 50. Therefore, brief instruments that allow its measurement within the clinical evaluation and research processes are necessary. The ENRICH Social Support Scale (ESSI) is a brief and easy-to-use instrument that measures the perception of social support; however, its psychometric properties in people over 50 in the Chilean context have yet to be tested.
View Article and Find Full Text PDFACS Nano
January 2025
Hunan Province Key Laboratory for Advanced Carbon Materials and Applied Technology, College of Materials Science and Engineering, Hunan University, Changsha 410082, China.
SiO-based anodes, considered the most promising candidate for high-energy density batteries, have long been bothered by mechanical integrity issues. Research efforts focus on particle modifications, often overlooking the enhancement of interparticle connections, which can reduce the active material content within the electrode. Herein, an integrated electrode with strong covalent bonding at the electrode scale is designed, achieving excellent mechanical stability with ∼95 wt.
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