Driven by the increasing demand for high-energy-density batteries in electric vehicles and portable electronics,lithium metal batteries have made significant breakthroughs[1–3].While critical challenges associated wi...Driven by the increasing demand for high-energy-density batteries in electric vehicles and portable electronics,lithium metal batteries have made significant breakthroughs[1–3].While critical challenges associated with lithium metal anodes in liquid electrolytes(e.g.,dendrite growth,interface instability)have hindered commercialization[4–6],solid electrolyte systems have shown promise in mitigating these issues.Among these,solid polymer electrolytes(SPEs)have emerged as a viable solution for enabling stable quasisolid-state lithium metal batteries[7–9].展开更多
Coenzyme Q10 and vitamin E are among the most widely consumed nutritional supplements in China owing to their antioxidant and other health-promoting properties.This study aimed to establish an accurate and efficient a...Coenzyme Q10 and vitamin E are among the most widely consumed nutritional supplements in China owing to their antioxidant and other health-promoting properties.This study aimed to establish an accurate and efficient analytical method for the simultaneous determination of these two compounds in commercial softgel capsules,which is essential for rigorous quality control.Herein,a proton nuclear magnetic resonance(1H NMR)method was developed and validated using coumarin as an internal standard.Characteristic signals at 3.997 ppm for coenzyme Q10 and 2.621 ppm for vitamin E were selected for quantification.The method demonstrated excellent performance in terms of precision(relative standard deviation<2%),specificity(resolution>1.5),and stability(24-h variation<3%).The validation results complied with the China Food and Drug Administration guidelines,demonstrating high accuracy.Application to products from four different manufacturers showed compound contents ranging from 98.2%to 102.4%of label amounts.These findings support^(1)H NMR spectroscopy as a rapid,precise,and reliable approach for the simultaneous quality assessment of coenzyme Q10 and vitamin E formulations.展开更多
基金supported by the National Natural Science Foundation of China(22279028,21975063,22421001)the Natural Science Foundation of Hebei Province(B2021205019)the 333 Project of Hebei Province(C20231106)。
文摘Driven by the increasing demand for high-energy-density batteries in electric vehicles and portable electronics,lithium metal batteries have made significant breakthroughs[1–3].While critical challenges associated with lithium metal anodes in liquid electrolytes(e.g.,dendrite growth,interface instability)have hindered commercialization[4–6],solid electrolyte systems have shown promise in mitigating these issues.Among these,solid polymer electrolytes(SPEs)have emerged as a viable solution for enabling stable quasisolid-state lithium metal batteries[7–9].
基金supported by the Open Research Fund Program of the Shandong Provincial Key Laboratory of Glycoscience and Glycotechnology(Ocean University of China)。
文摘Coenzyme Q10 and vitamin E are among the most widely consumed nutritional supplements in China owing to their antioxidant and other health-promoting properties.This study aimed to establish an accurate and efficient analytical method for the simultaneous determination of these two compounds in commercial softgel capsules,which is essential for rigorous quality control.Herein,a proton nuclear magnetic resonance(1H NMR)method was developed and validated using coumarin as an internal standard.Characteristic signals at 3.997 ppm for coenzyme Q10 and 2.621 ppm for vitamin E were selected for quantification.The method demonstrated excellent performance in terms of precision(relative standard deviation<2%),specificity(resolution>1.5),and stability(24-h variation<3%).The validation results complied with the China Food and Drug Administration guidelines,demonstrating high accuracy.Application to products from four different manufacturers showed compound contents ranging from 98.2%to 102.4%of label amounts.These findings support^(1)H NMR spectroscopy as a rapid,precise,and reliable approach for the simultaneous quality assessment of coenzyme Q10 and vitamin E formulations.