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3篇 您的检索式:作者名="Liuxing Wei"
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1Passivation agent with dipole moment for surface modification towards efficient and stable perovskite solar cells显示文摘Recently,there has been renewed interest in interface engineering as a means to further push the performance of perovskite solar cells closer to the Schockly-Queisser limit.Herein,for the first time we employ a multi-functional 4-chlorobenzoic acid to produce a self-assembled monolayer on a perovskite surface.With this interlayer we observe passivation of perovskite surface defects and a significant suppression of non-radiative charge recombination.Furthermore,at the surface of the interlayer we observe,charge dipoles which tune the energy level alignment,enabling a larger energetic driving force for hole extraction.The perovskite surface becomes more hydrophilic due to the presence of the interlayer.Consequently,we observe an improvement in open-circuit voltage from 1.08 to 1.16 V,a power conversion efficiency improvement from 18%to 21%and an improved stability under ambient conditions.Our work highlights the potential of SAMs to engineer the photo-electronic properties and stability of perovskite interfaces to achieve high-performance light harvesting devices.Ge Wang Chen Wang Yajun Gao Shanpeng Wen Roderick C.I.MacKenzie Liuxing Guo Wei Dong Shengping Ruan 2022Journal of Energy Chemistry2022,31,1:1
2Extracellular RNAs-TLR3 signaling contributes to cognitive impairment after chronic neuropathic pain in mice显示文摘Chronic pain is often associated with cognitive decline,which could influence the quality of the patient’s life.Recent studies have suggested that Toll-like receptor 3(TLR3)is crucial for memory and learning.Nonetheless,the contribution of TLR3 to the pathogenesis of cognitive decline after chronic pain remains unclear.The level of TLR3 in hippocampal neurons increased in the chronic constriction injury(CCI)group than in the sham group in this study.Importantly,compared to the wild-type(WT)mice,TLR3 knockout(KO)mice and TLR3-specific neuronal knockdown mice both displayed improved cognitive function,reduced levels of inflammatory cytokines and neuronal apoptosis and attenuated injury to hippocampal neuroplasticity.Notably,extracellular RNAs(exRNAs),specifically double-stranded RNAs(dsRNAs),were increased in the sciatic nerve,serum,and hippocampus after CCI.The co-localization of dsRNA with TLR3 was also increased in hippocampal neurons.And the administration of poly(I:C),a dsRNA analog,elevated the levels of dsRNAs and TLR3 in the hippocampus,exacerbating hippocampus-dependent memory.In additon,the dsRNA/TLR3 inhibitor improved cognitive function after CCI.Together,our findings suggested that exRNAs,particularly dsRNAs,that were present in the condition of chronic neuropathic pain,activated TLR3,initiated downstream inflammatory and apoptotic signaling,caused damage to synaptic plasticity,and contributed to the etiology of cognitive impairment after chronic neuropathic pain.Xueying Zhang Rui Gao Changteng Zhang Yi Teng Hai Chen Qi Li Changliang Liu Jiahui Wu Liuxing Wei Liyun Deng Lining Wu Shixin Ye-Lehmann Xiaobo Mao Jin Liu Tao Zhu Chan Chen 2023Signal Transduction and Targeted Therapy2023,8,9:0
3Cholesterol-25-Hydroxylase Suppresses Seneca Valley Virus Infection via Producing 25-Hydroxycholesterol to Block Adsorption Procedure显示文摘Cholesterol-25-hydroxylase(CH25 H)is a membrane protein associated with endoplasmic reticulum,and it is an interferon-stimulated factor regulated by interferon.CH25 H catalyzes cholesterol to produce 25-hydroxycholesterol(25 HC)by adding a second hydroxyl to the 25 th carbon atom of cholesterol.Recent studies have shown that both CH25 H and 25 HC could inhibit the replication of many viruses.In this study,we found that ectopic expression of CH25 H in HEK-293 T and BHK-21 cell lines could inhibit the replication of Seneca Valley virus(SVV)and that there was no species difference.On the other hand,the knockdown of CH25 H could enhance the replication of SVV in HEK-293 T and BHK-21 cells,indicating the importance of CH25 H.To some extent,the CH25 H mutant without hydroxylase activity also lost its ability to inhibit SVV amplification.Further studies demonstrated that 25 HC was involved in the entire life cycle of SVV,especially in repressing its adsorption process.This study reveals that CH25 H exerts the advantage of innate immunity mainly by producing 25 HC to block virion adsorption.Hui Li Zekai Zhao Xiangmin Li Liuxing Qin Wei Wen Huanchun Chen Ping Qian 2021Virologica Sinica2021,36,5:0
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