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| 1 | Assessment of selenium pollution in agricultural soils in the Xuzhou District,Northwest Jiangsu, China显示文摘Xuzhou City is an important base for coal production and coal-fired power. To evaluate selenium contamination in this area, we sampled agricultural soil, soil profile, irrigation water, bedrock, coal, fly ash, paddy rice, and vegetables from the north of Xuzhou City, and determined their selenium contents. The background level of selenium in the soil profile was 0.08 mg/kg. The selenium concentrations in agricultural soils and irrigation water were in the range of 0.21-4.08 mg/kg and 0.002-0.29 mg/L, respectively. Soils with high selenium content were located closely to coalmines and power plants. The average selenium concentrations in coal and coal fly ash were 5.46 and 2.81 mg/kg, respectively. In contrast, the concentrations of selenium in bedrock and in the soil profile were very low. These results imply that the high selenium level in agricultural soils is mainly caused by anthropogenic activities, rather than by parent material. The arithmetic mean of selenium concentration in paddy rice was 0.116 mg/kg, and in cabbage was 0.05 mg/kg. The selenium concentration in rice was positively correlated with total selenium concentration in soil, suggesting that selenium in soil is readily transferred into the crops. Furthermore, the estimated dietary intake (88.8 μg) of selenium from paddy rice and cabbage exceeds the recommended dietary allowance (55 μg). Therefore, there is a potential health risk from consumption of local staple food in the study area. | HUANG Shunsheng HUA Ming FENG Jinshun ZHONG Xinyong JIN Yang ZHU Baiwan LU Hua | 2009 | Journal of Environmental Sciences2009,21,4: | 22 |
| 2 | Absorption mechanism of carbon-nanotube paper- titanium dioxide as a multifunctional barrier material for lithium-sulfur batteries显示文摘Lithium-sulfur batteries attract much interest as energy storage devices for their low cost, high specific capacity, and energy density. However, the insulating properties of sulfur and high solubility of lithium polysulfides decrease the utilization of active materials by the battery resulting in poor cycling performance. Herein, we design a multifunctional carbon-nanotube paper/titanium-dioxide barrier which effectively reduces active material loss and suppresses the diffusion of lithium polysulfides to the anode, thereby improving the cycling stability of lithium-sulfur batteries. Using this barrier, an activated carbon/sulfur cathode with 70% sulfur content delivers stable cycling performance and high Coulombic efficiency (-99%) over 250 cycles at a current rate of 0.5 C. The improved electrochemical performance is attributed to the synergistic effects of the carbon nanotube paper and titanium dioxide, involving the physical barrier, chemical adsorption from the binding formation of Ti-S and S-O, and other interactions unique to the titanium dioxide and sulfur species. | Guiyin Xu Jiaren Yuan Xinyong Tao Bing Ding Hui Dou Xiaohong Yan Yang xiao Xiaogang Zhang | 2015 | Nano Research2015,8,9: | 7 |
| 3 | Nanostructured strategies towards boosting organic lithium-ion batteries显示文摘Pursuing material development for next-generation batteries,organic electrode materials have shown great potential for lithium-ion batteries.However,their widespread adopting is plagued by intrinsic problems such as poor electronic conductivity,high dissolution inside electrolytes and unstable chemical peculiarity.Recently,nanostructured-strategies promoted organic electrodes with exotic properties for enhancing electron and ion transport together with the stability during electrochemical process,have received increasing attention and have been extensive applied in boosting the organic lithium-ion based energy storage.In this review,we summarize the applications of nanostructures to improve the performance of both organic anodes and cathodes,including(i)nanoscale design of zero-dimensional organic electrode materials,(ii)strategies of one-dimensional nanostructured organic electrode materials,(iii)construction of two-dimensional nanosized organic composite electrodes,and(iv)three-dimensional exploration of nanosized organic electrodes.We hope to stimulate high-quality applied research on understanding and handling the relationship between the nanostructure and performance of organic lithium-ion batteries that might speed up the commercialization of organic lithium ion batteries. | Yujing Liu Guoyuan Sun Xiaohan Cai Fan Yang Cong Ma Min Xue Xinyong Tao | 2021 | Journal of Energy Chemistry2021,30,3: | 2 |
| 4 | Stable room-temperature multi-wavelength lasing realization in or- dinary erbium-doped fiber loop lasers 显示文摘 | Liu Yange Dong Xinyong Shum Ping | 2006 | Optics Ex- press2006,14,20: | 1 |
| 5 | SARS-CoV-2 NSP5 and N protein counteract the RIG-I signaling pathway by suppressing the formation of stress granules显示文摘As a highly pathogenic human coronavirus,SARS-CoV-2 has to counteract an intricate network of antiviral host responses to establish infection and spread.The nucleic acid-induced stress response is an essential component of antiviral defense and is closely related to antiviral innate immunity.However,whether SARS-CoV-2 regulates the stress response pathway to achieve immune evasion remains elusive.In this study,SARS-CoV-2 NSP5 and N protein were found to attenuate antiviral stress granule(avSG)formation.Moreover,NSP5 and N suppressed IFN expression induced by infection of Sendai virus or transfection of a synthetic mimic of dsRNA,poly(I:C),inhibiting TBK1 and IRF3 phosphorylation,and restraining the nuclear translocalization of IRF3.Furthermore,HEK293T cells with ectopic expression of NSP5 or N protein were less resistant to vesicular stomatitis virus infection.Mechanistically,NSP5 suppressed avSG formation and disrupted RIG-I–MAVS complex to attenuate the RIG-I–mediated antiviral immunity.In contrast to the multiple targets of NSP5,the N protein specifically targeted cofactors upstream of RIG-I.The N protein interacted with G3BP1 to prevent avSG formation and to keep the cofactors G3BP1 and PACT from activating RIG-I.Additionally,the N protein also affected the recognition of dsRNA by RIG-I.This study revealed the intimate correlation between SARS-CoV-2,the stress response,and innate antiviral immunity,shedding light on the pathogenic mechanism of COVID-19. | Yi Zheng Jian Deng Lulu Han Meng-Wei Zhuang Yanwen Xu Jing Zhang Mei-Ling Nan Yang Xiao Peng Zhan Xinyong Liu Chengjiang Gao Pei-Hui Wang | 2022 | Signal Transduction and Targeted Therapy2022,7,2: | 1 |
| 6 | Distributed implantation of a flexible microelectrode array for neural recording显示文摘Flexible multichannel electrode arrays(fMEAs)with multiple flaments can be flexibly implanted in various patterns.It is necessary to develop a method for implanting the fMEA in different locations and at various depths based on the recording demands.This study proposed a strategy for reducing the microelectrode volume with integrated packaging.An implantation system was developed specifically for semiautomatic distributed implantation.The feasibility and convenience of the fMEA and implantation platform were verified in rodents.The acute and chronic recording results provied the effectiveness of the packaging and implantation methods.These methods could provide a novel strategy for developing fMEAs with more flaments and recording sites to measure functional interactions across multiple brain regions. | Chunrong Wei Yang Wang Weihua Pei Xinyong Han Longnian Lin Zhiduo Liu Gege Ming Ruru Chen Pingping Wu Xiaowei Yang Li Zheng Yijun Wang | 2022 | Microsystems & Nanoengineering2022,8,3: | 1 |
| 7 | Enhanced sulfide chemisorption by conductive AI-doped ZnO decorated carbon nanoflakes for advanced Li-S batteries显示文摘 | Yangbo Kong Jianmin Luo Chengbin Jin Huadong Yuan Ouwei Sheng Liyuan Zhang Cong Fang Wenkui Zhang Hui Huang Yang Xia Chu Liang Jun Zhang Yongping Gan Xinyong Tao | 2018 | Nano Research2018,11,1: | 1 |
| 8 | Preparation,charac- terization and photoelectrocatalyfic properties of nanocrystalline Fe2O5/TiO2, ZnO/TiO2 and Fe2O3/ZnO/TiO2 composim film electrodes towards pentachlorophenol degradation显示文摘 | Yang Shaogui Quan Xin Li Xinyong | 2004 | Phys Chem Chem Phys2004,6,: | 1 |
| 9 | Aligned carbon nanotube-reinforced silicon carbide composites produced by chemical vapor infiltration显示文摘 | Zhanjun Gu Yingchao Yang Kaiyuan Li Xinyong Tao Gyula Eres Jane Y. Howe Litong Zhang Xiaodong Li Zhengwei Pan | 2011 | Carbon2011,,7: | 1 |
| 10 | Structural and photovoltaic properties of highly ordered ZnFe 2 O 4 nanotube arrays fabricated by a facile sol–gel template method显示文摘 | Feifei Liu Xinyong Li Qidong Zhao Yang Hou Xie Quan Guohua Chen | 2009 | Acta Materialia2009,,9: | 1 |
| 11 | Highly mesoporous carbon foams synthesized by a facile, cost effective and template-free Peehini method for advanced lithium sulfur batteries 显示文摘 | Tao Xinyong Chen Xiaorong Xia Yang | 2013 | Journal of Materials Chemistry A2013,1,10: | 1 |
| 12 | Synthesis and electrochemical properties of Nb-doped Li 3 V 2 (PO 4 ) 3 /C cathode materials for lithium-ion batteries显示文摘 | Yang Xia Wenkui Zhang Hui Huang Yongping Gan Chongge Li Xinyong Tao | 2011 | Materials Science & Engineering B2011,,8: | 1 |
| 13 | A novel fiber Bragg grating displacement sensor 显示文摘 | Meng Hongyun Dong Xinyong Yang Shiquan | 2001 | Proc SPIE2001,4595,: | 1 |
| 14 | Role of hydroxyl radicals and mechanism of escherichia coli inactivation on Ag/AgBr/TiO2 nanotube array electrode under visible light irradiation 显示文摘 | Hou Yang Li Xinyong Zhao Qidong | 2012 | Enviro- nmental Science and Technology2012,46,7: | 1 |
| 15 | A novel temperature-insensitive fiber Bragg grating sensor for displacement measurement显示文摘 | DONG Xinyong YANG Xiufeng ZHAO Chunliu | 2005 | Smart Materials and Structures2005,14,2: | 1 |
| 16 | Hemodynamic evaluation of different stent graft schemes in aortic arch covered stent implantation显示文摘Implantation of the left subclavian artery(LSA)stent graft used in fenestration technique of the thoracic endovascular aortic repair(TEVAR)may interfere with the aortic helical blood flow that is believed to have important protective functions against atherogenesis.The present study investigated four different LSA stent graft implantation schemes for their resulted blood flow patterns in the thoracic aortic with hemodynamic computational simulation methods:the flush branch(FB),the protruding branch(PB),the straight cuff branch(SCB)and the cured cuff branch(CCB).The results showed that the PB scheme could slightly enhance helicity of the swirling flow in the aorta,but the other three schemes had less effect on blood flow helicity.The PB scheme produced lowTAWSS,high-OSI and high-RRT around the LSA root,and the FB scheme had similar TAWSS,OSI and RRT in both value and distribution to those in the aorta without LSA stent graft implantation.The SCB and CCB schemes led to less area of high-OSI and high-RRT values along the walls of the LSA branch arteries.The results also showed that the PB scheme would significantly reduce blood supply to the LSA,on the contrary,the CCB scheme enhanced LSA blood supply and less effect on the total blood supply to the three branches of the thoracic aorta.In summary,all of the four schemes have no significant effect on the aortic swirling flow,however,in the terms of TAWSS,OSI,RRT and blood supply to the LSA,the CCB model might be the best option with less area of low-WSS,high-OSI,high-RRT and well blood supply in the LSA. | Jingxin Liu Xinyong Cai Yuliang Zhan Hongmin Zhu Haiyong Ao Yizao Wan Honglin Luo Zhiwei Yang Quanchao Zhang | 2022 | Medicine in Novel Technology and Devices2022,,1: | 0 |
| 17 | Medicinal chemistry strategies in the discovery and optimization of HBV core protein allosteric modulators(2018-2022 update)显示文摘Despite the improving coverage of preventative vaccines,hepatitis B remains a severe global public health problem,with more than 250 million patients living with hepatitis B virus(HBV)infection.Current available therapies,including nucleos(t)ide analogs and peginterferon,can control HBV replication but fail to eliminate covalently closed circular DNA(cccDNA)and achieve a cure.The HBV core protein(Cp)is a well-conserved structural protein,self-assembling to form the viral capsid.It involves in or modulates almost every stage of the HBV lifecycle,which makes it an attractive target for the development of new anti-HBV therapies.HBV core protein allosteric modulators(CpAMs)have become a hotspot in recent years.Herein,we provide a concise report focusing on the various medicinal chemistry strategies involved in the latest research(2018-2022)of HBV CpAMs,including high throughput screening(HTS),virtual screening(VS),drug repositioning,natural products,substitution decorating approach,scaffold hopping,molecular hybridization,prodrug strategy and conformational constraint strategy,to provide guidance for further development of new and effective anti-HBV drugs. | Xiaoyu Shao Shujing Xu Xufeng Wan Yang Zhou Shuo Wang Shuo Wu Yuhuan Li Xinyong Liu Peng Zhan | 2023 | Chinese Chemical Letters2023,34,11: | 0 |
| 18 | Medicinal chemistry strategies towards the development of non-covalent SARS-CoV-2 Mpro inhibitors显示文摘The main protease(M^(pro))of SARS-CoV-2 is an attractive target in anti-COVID-19 therapy for its high conservation and major role in the virus life cycle.The covalent M^(pro)inhibitor nirmatrelvir(in combination with ritonavir,a pharmacokinetic enhancer)and the non-covalent inhibitor ensitrelvir have shown efficacy in clinical trials and have been approved for therapeutic use.Effective antiviral drugs are needed to fight the pandemic,while non-covalent M^(pro)inhibitors could be promising alternatives due to their high selectivity and favorable druggability.Numerous non-covalent M^(pro)inhibitors with desirable properties have been developed based on available crystal structures of M^(pro).In this article,we describe medicinal chemistry strategies applied for the discovery and optimization of non-covalent M^(pro)inhibitors,followed by a general overview and critical analysis of the available information.Prospective viewpoints and insights into current strategies for the development of non-covalent M^(pro)inhibitors are also discussed. | Letian Song Shenghua Gao Bing Ye Mianling Yang Yusen Cheng Dongwei Kang Fan Yi Jin-Peng Sun Luis Menéndez-Arias Johan Neyts Xinyong Liu Peng Zhan | 2024 | Acta Pharmaceutica Sinica B2024,14,1: | 0 |
| 19 | Discovery of novel sulfonamide substituted indolylarylsulfones as potent HIV-1 inhibitors with better safety profiles显示文摘Indolylarylsulfones(IASs) are classical HIV-1 non-nucleoside reverse transcriptase inhibitors(NNRTIs) with a unique scaffold and possess potent antiviral activity.To address the high cytotoxicity and improve safety profiles of IASs,we introduced various sulfonamide groups linked by alkyl diamine chain to explore the entrance channel of non-nucleoside inhibitors binding pocket.48 compounds were designed and synthesized to evaluate their anti-HIV-1 activities and reverse transcriptase inhibition activities.Especially,compound R_(10)L_(4) was endowed with significant inhibitory activity towards wild-type HIV-1(EC_(50(WT))=0.007μmol/L,SI=30,930) as well as a panel of single-mutant strains exemplified by L100I(EC_(50)=0.017μmol/L,SI=13,055),E138K(EC_(50)=0.017μmol/L,SI=13,123) and Y181C(EC_(50)=0.045μmol/L,SI=4753) which were superior to Nevirapine and Etravirine.Notably,R_(10)L_(4) was characterized with significantly reduced cytotoxicity(CC_(50)=216.51μmol/L) and showed no remarkable in vivo toxic effects(acute and subacute toxicity).Moreover,the computer-based docking study was also employed to characterize the binding mode between R_(10)L_(4) and HIV-1 RT.Additionally,R_(10)L_(4) presented an acceptable pharmacokinetic profile.Collectively,these results deliver precious insights for next optimization and indicate that the sulfonamide IAS derivatives are promising NNRTIs for further development. | Shenghua Gao Letian Song Yusen Cheng Fabao Zhao Dongwei Kang Shu Song Mianling Yang Bing Ye Wei Zhao Yajie Tang Erik De Clercq Christophe Pannecouque Peng Zhan Xinyong Liu | 2023 | Acta Pharmaceutica Sinica B2023,13,6: | 0 |
| 20 | A critical review on composite solid electrolytes for lithium batteries:Design strategies and interface engineering显示文摘The rapid development of new energy vehicles and 5G communication technologies has led to higher demands for the safety,energy density,and cycle performance of lithium-ion batteries as power sources.However,the currently used liquid carbonate compounds in commercial lithium-ion battery electrolytes pose potential safety hazards such as leakage,swelling,corrosion,and flammability.Solid electrolytes can be used to mitigate these risks and create a safer lithium battery.Furthermore,high-energy density can be achieved by using solid electrolytes along with high-voltage cathode and metal lithium anode.Two types of solid electrolytes are generally used:inorganic solid electrolytes and polymer solid electrolytes.Inorganic solid electrolytes have high ionic conductivity,electrochemical stability window,and mechanical strength,but suffer from large solid/solid contact resistance between the electrode and electrolyte.Polymer solid electrolytes have good flexibility,processability,and contact interface properties,but low room temperature ionic conductivity,necessitating operation at elevated temperatures.Composite solid electrolytes(CSEs) are a promising alternative because they offer light weight and flexibility,like polymers,as well as the strength and stability of inorganic electrolytes.This paper presents a comprehensive review of recent advances in CSEs to help researchers optimize CSE composition and interactions for practical applications.It covers the development history of solid-state electrolytes,CSE properties with respect to nanofillers,morphology,and polymer types,and also discusses the lithium-ion transport mechanism of the composite electrolyte,and the methods of engineering interfaces with the positive and negative electrodes.Overall,the paper aims to provide an outlook on the potential applications of CSEs in solid-state lithium batteries,and to inspire further research aimed at the development of more systematic optimization strategies for CSEs. | Tianqi Yang Cheng Wang Wenkui Zhang Yang Xia Hui Huang Yongping Gan Xinping He Xinhui Xia Xinyong Tao Jun Zhang | 2023 | Journal of Energy Chemistry2023,,9: | 0 |