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Search: WFRF:(Sun Yaqi)

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1.
  • Jia, Xiaomin, et al. (author)
  • Single crystal metal-organic framework constructed by vertically self-pillared nanosheets and its derivative for oriented lithium plating
  • 2021
  • In: Cuihuà xuébào. - : Elsevier BV. - 0253-9837 .- 1872-2067. ; 42:9, s. 1553-1560
  • Journal article (peer-reviewed)abstract
    • This vertically self-pillared (VSP) structure extends the application range of traditional porous materials with facile mass/ion transport and enhanced reaction kinetics. Here, we prepare a single crystal metal-organic framework (MOF), employing the ZIF-67 structure as a proof of concept, which is constructed by vertically self-pillared nanosheets (VSP-MOF). We further converted VSP-MOF into VSP-cobalt sulfide (VSP-CoS2) through a sulfidation process. Catalysis plays an important role in almost all battery technologies; for metallic batteries, lithium anodes exhibit a high theoretical specific capacity, low density, and low redox potential. However, during the half-cell reaction (Li++e=Li), uncontrolled dendritic Li penetrates the separator and solid electrolyte interphase layer. When employed as a composite scaffold for lithium metal deposition, there are many advantage to using this framework: 1) the VSP-CoS2 substrate provides a high specific surface area to dissipate the ion flux and mass transfer and acts as a pre-catalyst, 2) the catalytic Co center favors the charge transfer process and preferentially binds the Li+ with the enhanced electrical fields, and 3) the VSP structure guides the metallic propagation along the nanosheet 2D orientation without the protrusive dendrites. All these features enable the VSP structure in metallic batteries with encouraging performances.
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2.
  • Wang, Aozhe, et al. (author)
  • Targeted lipidomics and inflammation response to six weeks of sprint interval training in male adolescents
  • 2023
  • In: International Journal of Environmental Research and Public Health. - : MDPI. - 1661-7827 .- 1660-4601. ; 20:4
  • Journal article (peer-reviewed)abstract
    • Lipids play an important role in coordinating and regulating metabolic and inflammatoryprocesses. Sprint interval training (SIT) is widely used to improve sports performance and healthoutcomes, but the current understanding of SIT-induced lipid metabolism and the correspondingsystemic inflammatory status modification remains controversial and limited, especially in maleadolescents. To answer these questions, twelve untrained male adolescents were recruited andunderwent 6 weeks of SIT. The pre- and post-training testing included analyses of peak oxygenconsumption (VO2peak), biometric data (weight and body composition), serum biochemical pa-rameters (fasting blood glucose, total cholesterol, high-density lipoprotein cholesterol, low-densitylipoprotein cholesterol, triacylglycerol, testosterone, and cortisol), inflammatory markers, and tar-geted lipidomics. After the 6-week SIT, the serum C-reactive protein (CRP), interleukin (IL)-1β, IL-2,IL-4, IL-10, tumor necrosis factor (TNF)-α, and transforming growth factor (TGF)-β significantlydecreased (p < 0.05), whereas IL-6 and IL-10/TNF-α significantly increased (p < 0.05). In addition,the targeted lipidomics revealed changes in 296 lipids, of which 33 changed significantly (p < 0.05,fold change > 1.2 or <1/1.2). The correlation analysis revealed that the changes in the inflammatorymarkers were closely correlated with the changes in some of the lipids, such as LPC, HexCer, andFFA. In conclusion, the 6-week SIT induced significant changes in the inflammatory markers andcirculating lipid composition, offering health benefits to the population.
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