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3篇 您的检索式:作者名="Jinhang Du"
    题名 作者 年代 出处 被引量
1Xuefuzhuyu decoction for hyperlipidemia: a systematic review and Meta-analysis of randomized clinical trails显示文摘OBJECTIVE:To evaluate the efficacy and safety of Xuefuzhuyu decoction for hyperlipidemia.METHODS:Randomized clinical trials on hyperlipidemia treated by Xuefuzhuyu decoction,either alone or with Western Medicine,were searched in electronic databases.Databases searched were:MEDLINE,Allied and Complementary Medicine Database,EMBASE,The Cochrane Library 2013(Issue4),China National Knowledge Infrastructure Database,Chinese Biomedical Literature Database,and Wanfang Database up to 2 May,2013.Study selection,data extraction,quality assessment,and data analysis were conducted according to the Cochranestandards.RESULTS:Six randomized clinical trials involving748 patients(373 patients in the treatment group,375 patients in the control group)were included in the analysis.The studies were of low methodological quality.Meta-analysis indicated that the effect of Xuefuzhuyu decoction on hyperlipidemia was better than that in the control group[n=748,OR=5.07,95%CI(3.40,7.58),P<0.01].Weighted mean differencesin total cholesterol,low-densitylipoprotein cholesterol,triglycerides,and high-density lipoprotein cholesterol were﹣0.79,﹣0.74,﹣0.44,0.16,respectively,and Meta-analysis revealed that the treatment group was better than the control group with 95%CI(﹣1.21,﹣0.36),(﹣0.94,﹣0.55),(﹣0.77,﹣0.11),(0.04,0.27),respectively(all P<0.05).Some adverse events in evaluated studies wererecorded.CONCLUSION:Xuefuzhuyu decoction may be effective for treating hyperlipidemia.The studies we analyzed were of low methodological quality,which indicates that the above findings should be considered cautiously.Therefore,more strictly designed large-scale randomized clinical trials are needed to evaluate the efficacy of Xuefuzhuyu decoction in hyperlipidemia.Jiangquan Liao Jiaxing Tian Tengfei Li Weijiang Song Weihan Zhao Jinhang Du 2014Journal of Traditional Chinese Medicine2014,34,4:5
2Eliminating carbon contamination with improved one-step electrochemical preparation of refractory high-entropy alloy TiZrHfNbTa显示文摘Creating refractory high-entropy alloys(RHEAs)effectively without impurities is a momentous challenge.Conventional methods for the preparation of RHEAs have exacting requirements for raw material purity and energy consumption.Molten salt electrolytic oxides are applied to the preparation of HEAs by virtue of their low cost and high efficiency.However,the use of graphite anodes in electrolysis will result in the carbon contamination of the products due to the deposition of CO_(3)^(2−)at the cathode.Increasing the reaction temperature accelerates the deoxidation of the oxide,thus reducing the amount of carbide but not eliminating it.Switching HfH_(2)instead of HfO_(2)and using Nb_(2)O_(5)to shield the precursor can effectively remove carbon contamination.However,this leads to a complicated preparation process and energy waste.Herein,we use the solid oxygen ion-conducting membrane(SOM)containing graphite and Sn(named as SOM@C/Sn)anode to separate the carbon from the molten salt and prevent the circulation of CO_(3)^(2−).The pure single-phase TiZrHfNbTa RHEA can be produced in only one-step with the SOM@C/Sn anode,which completely solves the problem of carbon contamination in the molten salt electrolysis preparation of HEAs.This work provides a feasible solution for the preparation of novel complex alloys such as carbon-free RHEAs in a low-cost short process.Peng Li Jinhang Fan Kaifa Du Peilin Wang Ao Liu Huayi Yin Dihua Wang 2023Journal of Materials Science & Technology2023,,32:0
3Catalytic conversion of biomass-derived compounds to various amino acids: status and perspectives显示文摘Amino acids are important nitrogen-containing chemicals that have a variety of applications.Currently,fermentation is the widely employed method to produce amino acids;however,the products are mostly limited to natural amino acids in the L-configuration.Catalytic synthesis is an alternative approach for the synthesis of amino acids with different types and configurations,where the use of renewable biomass-based feedstocks is highly attractive.To date,several lignocellulose and triacylglycerol-derived intermediates,typicallyα-keto acids andα-hydroxyl acids,have been transformed into amino acids via the amination reaction in the presence of additional nitrogen sources(i.e.,NH3·H2O).Making full use of inherent nitrogen in biomass(i.e.,chitin and protein)to produce amino acids avoids the use of extra nitrogen sources and meets the requirements of green chemistry,which is attracting increasing attention.In this review,we summarize different chemical-catalytic systems for the transformation of biomass to amino acids.An outlook on the challenges and opportunities for more effective production of amino acids from biomass by catalytic methods is provided.Benjing Xu Jinhang Dai Ziting Du Fukun Li Huan Liu Xingxing Gu Xingmin Wang Ning Li Jun Zhao 2023Frontiers of Chemical Science and Engineering2023,17,7:0
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