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2篇 您的检索式:作者名="Chenkai Wu"
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1Rationally pairing photoactive materials for high-performance polymer solar cells with efficiency of 16.53%显示文摘The emergence of non-fullerene acceptors(NFA) offers a promising opportunity to develop high-performance donor/acceptor pairs with high power conversion efficiency,as NFAs offer tunable energy levels,broad absorption and suitable aggregation property.In order to enhance light-harvesting capability of active layers,we choose a wide bandgap polymer PTQ10 as the donor to blend with a narrow bandgap NFAY6 as the acceptor.In comparison with PTQ10:IDIC blend,~130 nm red-shifted absorption spectrum is observed in the PTQ10:Y6 blend,which potentially enhance the short-circuit current density(Jsc) for the PSCs.In addition,the optimal PTQ10:Y6 blend shows higher photoluminescence quenching efficiency and more efficient charge separation,higher charge mobilities,as well as weaker bimolecular recombination over the PTQ10:IDIC blend,which leads to an outstanding power conversion efficiency(PCE) of 16.53%,with a notable Jsc of 26.65 mA cm^-2 and fill factor(FF) of 0.751.Yue Wu Yan Zheng Hang Yang Chenkai Sun Yingying Dong Chaohua Cui He Yan Yongfang Li 2020Science China Chemistry2020,63,2:5
2Investigating association between gut microbiota and sarcopenia-related traits:a Mendelian randomization study显示文摘Background Observational studies have indicated a potential link between gut microbiota and sarcopenia.However,the underlying mechanisms and a causal relationship have not been established.Thus,the objective of this study is to examine the possible causal association between gut microbiota and sarcopenia-related traits,including low hand-grip strength and appendicular lean mass(ALM),to shed light on the gut–muscle axis.Methods To investigate the potential impact of gut microbiota on low hand-grip strength and ALM,we utilized a two-sample Mendelian randomization(MR)approach.Summary statistics were obtained from genome-wide association studies of gut microbiota,low hand-grip strength,and ALM.The primary MR analysis employed the random-effects inverse-variance weighted(IVW)method.To assess the robustness,we conducted sensitivity analyses using the MR pleiotropy residual sum and outlier(MR-PRESSO)test to detect and correct for horizontal pleiotropy,as well as the MR-Egger intercept test and leave-one-out analysis.Results Alcaligenaceae,Family XIII,and Paraprevotella were positively associated with the risk of low hand-grip strength(P-values<0.05).Streptococcaceae were negatively associated with low hand-grip strength(P-values<0.05).Eight bacterial taxa(Actinomycetales,Actinomycetaceae,Bacteroidaceae,Porphyromonadaceae,Prevotellaceae,Bacteroides,Marvinbryantia,and Phascolarctobacterium)were associated with a higher risk of ALM(P-values<0.05).Eubacterium fissicatena group was negatively associated with ALM(P-values<0.05).Conclusion We found several gut microbiota components causally associated with sarcopenia-related traits.Our findings provided insights into novel strategies for the prevention and treatment of sarcopenia through the regulation of the gut microbiota,contributing to a better understanding of the gut–muscle axis.Jiaxi Zhao Rui Liang Quhong Song Shiyu Song Jirong Yue Chenkai Wu 2023Precision Clinical Medicine2023,6,2:0
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