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| 1 | Effects of therapies for regulating and reinforcing lung and kidney on osteoporosis in rats with chronic obstructive pulmonary disease显示文摘OBJECTIVE:To evaluate the efficacy and long-term effects of the three therapies for regulating and reinforcing lung and kidney(reinforcing lung and invigorating spleen,reinforcing lung and replenishing kidney,and supplementing Qi and nourishing kidney) in Traditional Chinese Medicine(TCM) on osteoporosis in rats with chronic obstructive pulmonary disease.METHODS:Totally 120 rats were randomly divided into control,model,Bufeijianpi,Bufeiyishen,Yiqizishen,aminophyline groups.Repeated smoke inhalations and bacterial infections were used to duplicate the stable Chronic obstructive pulmonary disease rat model.Normal saline was given to the air control and model groups,while Bufeijianpi granule,Bufeiyishen granule,and Yiqizishen granule,and aminophylline were administrated to rats in the Bufeijianpi,Bufeiyishen,Yiqizishen,and aminophylline groups respectively from weeks 9 through 20.Another 12 weeks without medicines to observe the long-term effect.Rats were sacrificed at week 20 and week 32.Bone mass density(BMD),bone mineral content(BMC),morphology of the femoral head,lung function,and levels of serum interleukin(IL)-1β,IL-6,and tumor necrosis factor-a were detected.RESULTS:At weeks 20 and 32,tidal volume,peak expiratory flow and expiratory flow at 50% tidal volume in the three TCM-treated groups were higher than those in the model group(P < 0.05).Femur weight,BMD,and BMC were significantly higher in the three TCM-treated groups and the aminophylline-treated group compared with the model group(P < 0.01),except for BMC in the Yiqizishen-treated group at week 20.CONCLUSION:Bufeijianpi,Bufeiyishen,and Yiqizishen granules show good effects in the prevention and treatment of osteoporosis,which can alleviate airflow limitations and inflammation,improve BMD and BMC of the femur,and have favorable long-term effects. | Tian Yange Li Ya Li Jiansheng Li Suyun Jiang Suli Wang Ying Lu Xiaofan Li Weiwei | 2015 | Journal of Traditional Chinese Medicine2015,35,2: | 13 |
| 2 | Investigation of Portevin–Le Chatelier Band Strain and Elastic Shrinkage in Al-Based Alloys Associated with Mg Contents显示文摘The Portevin–Le Chatelier(PLC) effect in Al–2.30wt%Mg, Al–4.57wt%Mg and Al–6.91wt%Mg alloys has been investigated at various applied strain rates at room temperature in this study. Three-dimensional digital image correlation(3D-DIC) technique was applied to obtaining the further insight into the spatiotemporal characteristics, in particular the influence of Mg content on deformation behaviors. Mg content has a pronounced effect on serration characteristics, including the serration type and amplitude; Mg content tends to weaken the spatial correlation of the propagative bands. Additionally, the serration amplitude linearly increases with the maximum PLC band strain; high Mg content generates a higher PLC band strain at a given serration amplitude compared with low Mg content. Mg content is found to be effective to enhance the serration amplitude, the maximum PLC band strain and also the amount of elastic shrinkage outside PLC bands. | Yulong Cai Suli Yang Shihua Fu Di Zhang Qingchuan Zhang | 2017 | Journal of Materials Science & Technology2017,33,6: | 3 |
| 3 | Preparation andcharacterization of a novel microcapsule-type latent curing agentfor epoxy resin显示文摘 | Xing Suli Yang Jinshui Huang Yalin | 2015 | Mater Design2015,85,: | 1 |
| 4 | Influence of migcrowave process on photoluminescence of europium - doped strontium ainminate phosphor prepared by a novel sol - gel - microwave process 显示文摘 | Suli Wu Shufen Zhang Jinzong Yang | 2007 | Materials Chemistry and Physics2007,,: | 1 |
| 5 | Surface modification of sulfonated poly(ether ether ketone) membranes using Nafion solution for direct methanol fuel cells显示文摘 | Suzhen Ren Chennan Li Xinsheng Zhao Zhimo Wu Suli Wang Gongquan Sun Qin Xin Xuefeng Yang | 2004 | Journal of Membrane Science2004,,1: | 1 |
| 6 | Shallow destructive earthquakes显示文摘Depths of earthquake occurrence and large slip distribution are critical for seismic hazard assessment.Numerous examples show that earthquakes with similar magnitudes,however,can result in significantly different ground shaking and damage.One of the critical factors is that whether the large slip was generated near the ground surface.In this article,we reviewed two aspects that are important on this regard,shallow slip deficit and nucleation depth.Understanding how shallow future earthquakes may nucleate in particular regions,such as shale gas fields,is critical for hazard assessment.Whether or not a strong earthquake may slip significantly at shallow depths(less than 3 km)plays crucial rules in seismic hazard preparation and should be further investigated by integrating high-resolution fault zone observations,dynamic rupture simulation,and fault zone properties.Moreover,precisely resolving shallow depth and slip distribution of earthquakes demands InSAR and/or other image data that can better capture the near-fault deformation to constrain the source parameters of earthquakes. | Hongfeng Yang Suli Yao | 2021 | Earthquake Science2021,34,1: | 1 |
| 7 | High Fe^(LS)(C)electrochemical activity of an iron hexacyanoferrate cathode boosts superior sodium ion storage显示文摘Sodium iron hexacyanoferrate(FeHCF)is one of the most promising cathode materials for sodium-ion batteries(SIBs)due to its low cost theoretical capacity.However,the low electrochemical activity of Fe^(LS)(C)in FeHCF drags down its practical capacity and potential plateau.Herein,FeHCF with high Fe^(LS)(C)electrochemical activity(C-FeHCF)is synthesized via a facile citric acid-assisted solvothermal method.As the cathode of SIBs,C-FeHCF shows superior cycling stability(ca.87.3%capacity retention for 1000 cycles at 10 C)and outstanding rate performance(ca.68.5%capacity retention at 50 C).Importantly,the contribution of Fe^(LS)(C)to the whole capacity was quantitatively analyzed via combining dQ/dV and discharge curve for the first time,and the index reaches 44.53%for C-FeHCF,close to the theoretical value.In-situ X-ray diffraction proves the structure stability of C-FeHCF during charge-discharge process,ensuring its superior cycling performance.Furthermore,the application feasibility of the C-FeHCF cathode in quasi-solid SIBs is also evaluated.The quasi-solid SIBs with the C-FeHCF cathode exhibit excellent electrochemical performance,delivering an initial discharge capacity of 106.5 mAh g^(−1) at 5 C and high capacity retention of 89.8%over 1200 cycles.This work opens new insights into the design and development of advanced cathode materials for SIBs and the beyond. | Junhong Guo Fan Feng Shiqiang Zhao Zhenhai Shi Rui Wang Meng Yang Fangfang Chen Suli Chen Zi-Feng Ma Tianxi Liu | 2023 | Carbon Energy2023,5,5: | 1 |
| 8 | Epoxidation of Sty- rene on Si/Ti/SiO2 Catalysts Prepared by Chemical Grafting 显示文摘 | Yang Qihua Wang Suli Lu Jiqing | 2000 | Appl Catal A2000,,: | 1 |
| 9 | 显示文摘 | Wu Suli Zhang Shufen Yang Jinzong | 2007 | Materials Chemistry and Physics2007,102,1: | 1 |
| 10 | Human ether-à-go-go-related gene expression is essential for cisplatinto induce apoptosis in human gastric cancer显示文摘 | Riping Zhang Pei Tian Qiang Chi Jizhou Wang Yongwei Wang Lingyu Sun Yang Liu Suli Tian Qifan Zhang | 2012 | Oncology Reports2012,,2: | 1 |
| 11 | Experimental measurement of proton conductivity and electronic conductivity of membrane electrode assembly for proton exchange membrane fuel cells显示文摘Charge transport processes involving the proton migration and electron transfer for different parts of membrane electrode assemble(MEA)play an essential role for developing the novel electrode and enhancing the electrochemical performance towards proton exchange membrane fuel cells(PEMFCs).However,the coupled charge transport processes make it difficult for evaluating proton conductivity and electronic conductivity of different parts in MEAs under operation conditions of fuel cells.Here in this work,we propose an experiment approach for separating the electronic conductivity and proton conductivity of different components of MEA at the operating conditions of PEMFCs.This approach involves two different measuring devices,which both consist of electron or proton conducting layers,sealing layers and sample layer,followed by tailoring the thickness of sample layers and via electrochemical impedance spectroscopy(EIS)to quantity the electronic conductivity and proton conductivity of different layers.These experiment results show the great potential in the development of different components of MEA. | Ruili Sun Zhangxun Xia Congrong Yang Fenning Jing Suli Wang Gongquan Sun | 2020 | Progress in Natural Science:Materials International2020,30,6: | 1 |
| 12 | Measurement and separation of cathodic mass transport resistance in high temperature proton exchange membrane fuel cell显示文摘High oxygen transport resistance in the cathode is a main cause of the low performance of high temperature proton exchange membrane fuel cell(HT-PEMFC),and therefore to determine the contribution of different mass transport processes to the oxygen transport resistance is beneficial to the subsequent research work.In this paper,the molecular diffusion resistance(R_(M))in the cathode was successfully calculated by measuring the limiting currents with using different diluent gases.And the oxygen transport resistance in phosphoric acid(R_(PA))was analyzed by changing the humidity and temperature.It was found that the total oxygen transport resistance(R_(total))increased obviously with the increase of the humidify,and the variation of Rtotal under different conditions was mainly related to the change of R_(PA).Combined with the phenomenon that the experimental value of R_(M) was less than the calculated value at high humidity,but higher than that at high operation temperature,we speculate that the cause of that RPA increased obviously at high humidity is the occupancy or blockage of gas phase transport channel in catalyst layer(CL)by phosphoric acid due to the water absorption of phosphoric acid in CL and the swelling of membrane.This consequence indicates that it is the change of phosphoric acid distribution that dominate Cis the Rtotalat high humidity. | Ziqian Wang Linlin Yang Suli Wang Hai Sun Gongquan Sun | 2020 | Progress in Natural Science:Materials International2020,30,6: | 0 |
| 13 | Atomically dispersed dual Fe centers on nitrogen-doped bamboo-like carbon nanotubes for efficient oxygen reduction显示文摘Interfacial atomic configuration between dual-metal active species and nitrogen-carbon substrates is of great importance for improving the intrinsic activity of catalysts toward oxygen reduction reaction(ORR).Thus,from the atomic-scale engineering we develop a high intrinsic activity ORR catalyst in terms of incorporating atomically dispersed dual Fe centers(single Fe atoms and ultra-small Fe atomic clusters)into bamboo-like N-doped carbon nanotubes.Benefiting from atomically dispersed dual-Fe centers on the atomic interface of Fe-Nx/carbon nanotubes,the fabricated dual Fe centers catalyst exhibits an extremely high ORR activity(E_(onset)=1.006 V;E_(1/2)=0.90 V),beyond state-of-the-art Pt/C.Remarkably,this catalyst also shows a superior kinetic current density of 19.690 mA·cm^(−2),which is 7 times that of state-of-the-art Pt/C.Additionally,based on the excellent catalyst,the primary Zn-air battery reveals a high power density up to 137 mW·cm^(−2) and sufficient potential cycling stability(at least 25 h).Undoubtedly,given the unique structure–activity relationship of dual-Fe active species and metal-nitrogen-carbon substrates,the catalyst will show great prospects in highly efficient electrochemical energy conversion devices. | Ligang Ma Junlin Li Zhiwei Zhang Hao Yang Xueqin Mu Xiangyao Gu Huihui Jin Ding Chen Senlin Yan Suli Liu Shichun Mu | 2022 | Nano Research2022,15,3: | 0 |
| 14 | Highly improved cyclic stability of Ni-rich/Li batteries with succinic anhydride as electrolyte additive and underlying mechanism显示文摘Lithium-metal battery based on Ni-rich cathode provides high energy density but presents poor cyclic stability due to the unstable electrode/electrolyte interfaces on both cathode and anode.In this work,we report a new strategy to address this issue.It is found that the cyclic stability of Ni-rich/Li battery can be significantly improved by using succinic anhydride(SA) as an electrolyte additive.Specifically,the capacity retention of LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)(NCM811)/Li cell is improved from 14% to 83% after 200cycles at 1 C between 3.0 and 4.35 V by applying 5% SA.The underlying mechanism of SA contribution is understood by comparing the effects of malic anhydride(MA) and citraconic anhydride(CA), both of which share a similar molecular structure to SA but show different effects.On anode side,SA can but MA and CA cannot form a protective solid electrolyte interphase(SEI) on Li anode.On cathode side,three anhydrides can suppress the formation of hydrogen fluoride from electrolyte oxidation decomposition,but SA behaves best.Typically,MA shows adverse effects on the interface stability of Li anode and NCM811 cathode,which originates from its high acidity.Though the acidity of MA can be mitigated by substituting a methyl for one H atom at its C=C bond,the substituent CA cannot compete with SA in cyclic stability improvement of the cell,because the SEI resulting from CA is not as robust as that from SA,which is related to the binding energy of the SEI components.This understanding reveals the importance of the electrolyte acidity on the Ni-rich cathode and the robustness of the SEI on Li anode,which is helpful for rationally designing new electrolyte additives to further improve the cyclic stability of high-energydensity Ni-rich/Li batteries. | Shu Yang Guanjie Li Xiaoyan Lin Changyong Mo Xianggui Zhou Lijiao Quan Kuan Zhou Suli Li Hai Wang Weishan Li | 2023 | Journal of Energy Chemistry2023,,3: | 0 |
| 15 | Awakening the oxygen evolution activity of MoS_(2) by oxophilic-metal induced surface reorganization engineering显示文摘Although molybdenum disulfide (MoS_(2))-based materials are generally known as active electrocatalysts for the hydrogen evolution reaction (HER), the inert performance for the oxygen evolution reaction (OER) seriously limits their wide applications in alkaline electrolyzers due to there exists too strong metal-sulfur (M−S) bond in MoS_(2). Herein, by means of surface reorganization engineering of bimetal Al, Co-doped MoS_(2) (devoted as AlCo_(3)-MoS_(2)) through in situ substituting partial oxidation, we successfully significantly activate the OER activity of MoS_(2), which affords a considerably low overpotential of 323 mV at −30 mA cm^(−2), far lower than those of MoS_(2), Al-MoS_(2) and Co-MoS_(2) catalysts. Essentially, the AlCo_(3)-MoS_(2) substrate produces lots of M−O (M=Al, Co and Mo) species with oxygen vacancies, which trigger the surface self-reconstruction of pre-catalysts and simultaneously boost the electrocatalytic OER activity. Moreover, benefiting from the moderate M−O species formed on the surface, the redistribution of surface electron states is induced, thus optimizing the adsorption of OH* and OOH* intermediates on metal oxyhydroxides and awakening the OER activity of MoS_(2). | Xueqin Mu Yang Zhu Xiangyao Gu Shipeng Dai Qixin Mao Lintao Bao Wenxuan Li Suli Liu Jianchun Bao Shichun Mu | 2021 | Journal of Energy Chemistry2021,30,11: | 0 |
| 16 | Valorization of Camellia oleifera oil processing byproducts to value-added chemicals and biobased materials: A critical review显示文摘The C.oleifera oil processing industry generates large amounts of solid wastes,including C.oleifera shell(COS)and C.oleifera cake(COC).Distinct from generally acknowledged lignocellulosic biomass(corn stover,bamboo,birch,etc.),Camellia wastes contain diverse bioactive substances in addition to the abundant lignocellulosic components,and thus,the biorefinery utilization of C.oleifera processing byproducts involves complicated processing technologies.This reviewfirst summarizes various technologies for extracting and converting the main components in C.oleifera oil processing byproducts into value-added chemicals and biobased materials,as well as their potential applications.Microwave,ultrasound,and Soxhlet extractions are compared for the extraction of functional bioactive components(tannin,flavonoid,saponin,etc.),while solvothermal conversion and pyrolysis are discussed for the conversion of lignocellulosic components into value-added chemicals.The application areas of these chemicals according to their properties are introduced in detail,including utilizing antioxidant and anti-in-flammatory properties of the bioactive substances for the specific application,as well as drop-in chemicals for the substitution of unrenewable fossil fuel-derived products.In addition to chemical production,biochar fabricated from COS and its applications in thefields of adsorption,supercapacitor,soil remediation and wood composites are comprehensively reviewed and discussed.Finally,based on the compositions and structural characteristics of C.oleifera byproducts,the development of full-component valorization strategies and the expansion of the appli-cationfields are proposed. | Xudong Liu Yiying Wu Yang Gao Zhicheng Jiang Zicheng Zhao Wenquan Zeng Mingyu Xie Sisi Liu Rukuan Liu Yan Chao Suli Nie Aihua Zhang Changzhu Li Zhihong Xiao | 2024 | Green Energy & Environment2024,9,1: | 0 |