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| 1 | Magnolol additive as a replacer of antibiotic enhances the growth performance of Linwu ducks显示文摘Magnolol rich in Magnolia officinalis is a bioactive polyphenolic compound. The aim of this study was to examine the effects of magnolol additive(MA) on growth performance, expression levels of antioxidantrelated genes, and intestinal mucosal morphology of Linwu ducks aged from 49 to 70 days, comparing with that of an antibiotic additive(colistin sulfate [CS]). A total of 275,49-day-old ducks were assigned to5 groups with 5 cages of 11 ducks each and fed diets supplemented with 0,100, 200 and 300 mg of MA/kg and 300 mg of CS/kg for 3 weeks, respectively. The results showed that the average daily body weight gain(ADG) was increased significantly in MA-fed groups(200 and 300 mg/kg), compared with the basal diet(BD) group(P < 0.05). The mRNA levels of superoxide dismutase-1(SOD1), manganese superoxide dismutase-2(MnSOD2) and catalase(CAT) were also increased significantly in MA groups(P < 0.05). In addition, hematoxylin and eosin staining revealed that Linwu ducks fed the diets with MA had more intact intestinal mucosa than those fed the BD and CS diets. In addition, ileal villus height, ileal villus height/crypt depth ratio(V/C) and duodenal V/C were also improved significantly(P < 0.05). Taken together, these data demonstrated that MA is an effective feed additive to enhance the growth performance of the Linwu ducks by improving the antioxidant and intestinal mucosal status, suggesting that MA will be a potential additive to replace antibiotic(CS). | Qian Lin Jianfei Zhao Kun Xie Yushi Wang Guili Hu Guitao Jiang Qiuzhong Dai Zhiyong Fan Jianhua He Xi He De-Xing Hou | 2017 | Animal Nutrition2017,,2: | 14 |
| 2 | Enhanced low-temperature performance of slight Mn-substituted LiFePO_4/C cathode for lithium ion batteries显示文摘Low temperature performance of LiFePO4/C cathode was remarkably improved by slight Mn-substitution. Electrochemical measurements showed that about 95% of the discharge capacity of LiFe0.98Mn0.02PO4/C cathode at 20°C was obtained at 0°C, compared to 85% of that of LiFePO4/C cathode. The LiFe0.98Mn0.02PO4/C sample also presented enhanced rate performance at –20°C with the discharge capacities of 124.4 mA h/g (0.1C), 99.8 mA h/g (1C), 80.7mAh/g (2C) and 70 mA h/g (5C), respectively, while pristine LiFePO4/C only delivered capacities of 120.5 mA h/g (0.1C), 90.7 mA h/g (1C), 70.4 mA h/g (2C) and 52.2 mA h/g (5C). Cyclic voltammetry measurements demonstrated an obvious improvement of the lithium insertion-extraction process of the LiFePO4/C cathode by slight Mn-substitution. The results of FSEM observation and electrical conductivity measurement indicated that slight Mn-substitution minimized the particle size of LiFe0.98Mn0.02PO4/C and also obviously improved the electrical conductivity of the compound, thus obviously enhances the interface reaction process on the cathode. | ZENG LingJie GONG Qiang LIAO XiaoZhen HE Li HE YuShi MA ZiFeng | 2011 | Chinese Science Bulletin2011,56,12: | 4 |
| 3 | A novel Co(phen)_2/C catalyst for the oxygen electrode in rechargeable lithium air batteries显示文摘A novel Co(phen)2/C catalyst was prepared by coating cobalt(II) phenanthroline (phen) chelate on BP2000 carbon black and then heat treating in an inert atmosphere. The obtained Co(phen)2/C product with 1.0 wt% cobalt loading exhibits similar morphology and porosity characteristics to those of the bare BP2000. X-ray diffraction measurements demonstrate a face-centered cubic (fcc) α-Co phase embedded in the carbon support after pyrolysis. Charge/discharge tests of the lithium-oxygen cells using the prepared Co(phen)2/C catalyst show high discharge capacities of 4870 mAh g-1 (0.05 mA cm-2 ), 3353 mAh g-1 (0.1 mA cm-2 ) and 3220 mAh g 1 (0.15 mA cm-2 ), respectively. The Co(phen) 2 /C cathode exhibits reasonable reversibility with capacity retention of 1401 mAh g-1 ( 0.1 mA cm-2 ) after 10 cycles. The superior electrochemical performance of the prepared Co(phen)2/C catalyst and low cost of the phenanthroline chelating agent indicate that Co(phen)2/C is a promising cheap catalyst for lithium-air batteries. | WANG Hong LIAO XiaoZhen JIANG QiZhong YANG XiaoWei HE YuShi Ma ZiFeng | 2012 | Chinese Science Bulletin2012,57,16: | 4 |
| 4 | 查看详情显示文摘 | He YuShi Li Pei Liao Xiaozhen | | 0,,02: | 1 |
| 5 | A solvothermal strategy: one-step in situ synthesis of self-assembled 3D graphene-based composites with enhanced lithium storage capacity显示文摘 | MA Jingjing WANG Jiulin HE Yushi | 2014 | Journal of Materials Chemistry A2014,2,24: | 1 |
| 6 | 显示文摘 | Liao Xiaozhen He Yushi Ma Zifeng | 2007 | J Power Sources2007,174,: | 1 |
| 7 | Electrochemical properties of P2-Na2/3O2 cathode material for sodium ion batteries when cycled in different voltage ranges显示文摘 | Wang Hong Yang Bingjian Liao Xiaozhen Xu Jing Yang Dezhi He Yushi Ma Zifeng | 2013 | Electrochimica Acta2013,113,: | 1 |
| 8 | Effects of fluorine-substitution on the electrochemical behavior of LiFe-PO4/C cathode materials 显示文摘 | Liao Xiaozhen He Yushi Ma Zifeng | 2007 | J Power Sources2007,174,2: | 1 |
| 9 | Nuclear EPL-HAM complex is essential for the development of chloroplasts显示文摘Chloroplasts most likely originated from the endosymbiosis of cyanobacterial ancestors,entering the eukaryotic lineage about 1.0-1.5 billion years ago(Parfrey et al.,2011;Archibald,2015).Consequently,their biogenesis depends on genetic information from both the nuclear and chloroplast genomes.Photosynthetic housekeeping genes of core components in photosystemsⅠandⅡ(PSI and PSII)are encoded by the plastid genome。 | Bo Ding Hongli Xie Kangning Zhang He Li Yushi Gao Jing Zhang Bin Xu Lianwei Peng Guofeng Yang Guo-Liang Wang Upinder Gill Zeng-Yu Wang Maofeng Chai | 2022 | Journal of Genetics and Genomics2022,49,12: | 1 |
| 10 | Fe-N co-doped coral-like hollow carbon shell toward boosting peroxymonosulfate activation for efficient degradation of tetracycline: Singlet oxygen-dominated non-radical pathway显示文摘Fe-N co-doped coral-like hollow carbon shell (Fe-N-CS) was synthesized via a simply impregnation-pyrolysis method.The Fe-N-CS showed an excellent ability for activating peroxymonosulfate (PMS),which could degrade about 93.74%tetracycline (20 mg/L) in 12 min.The Fe-N-CS/PMS system exhibited a good anti-interference capacity of various pH,inorganic anions,HA and different water qualities.More importantly,the Fe nanoparticles were anchored uniformly in the carbon layer,effectively limiting the metal leaching.The quenching tests and electron spin resonance (ESR) manifested that non-radical singlet oxygen (1O_(2))was the main reactive oxygen species (ROS) for TC degradation.The mechanism study showed that Fe nanoparticles,defect and graphite N played a key role in activating PMS to produce ROS.Moreover,three probable degradation pathways were proposed by using LC-MS measurements.Generally,this work had a new insight for the synthesis of heterogeneous Fe-N-C catalysts in the advanced oxidation process based on PMS. | Wenjin Chen Jin Huang Yaqian Shen Ke Zhu Lele Lei Hongmei He Yushi Ai | 2023 | Journal of Environmental Sciences2023,,4: | 1 |
| 11 | Synthesis of LiNi1/3Co1/3Mn1/3O2-zFz) cathode malerial from oxalate precursors for lithium ion battery 显示文摘 | He Yushi Pei Li Liao XiaozheH | 2007 | Journal of Fluorine Chemistry2007,128,2: | 1 |
| 12 | A novel bath lily-like graphene sheet-wrapped nano-Si composite as a high performance anode material for Li-ion batteries显示文摘 | HE Yushi GAO Pengfei CHEN Jun | 2011 | RSC Advances2011,1,6: | 1 |
| 13 | Application of traditional Chinese therapy in sports medicine显示文摘Chinese herbs have been used as dietary supplements to improve exercise performance.However,evidence-based studies for the use of Chinese herbs in sports remain scarce.Traditional Chinese therapy(TCT),a form of traditional Chinese non-pharmacological intervention,has remained in use for thousands of years in sports medicine.TCT is beneficial for sports injuries and in enhancing skill development,and is becoming increasingly popular among athletes,fitness enthusiasts,and individuals who regularly exercise.The therapeutic effects of TCT have been demonstrated by clinical and experimental studies,but using these modalities still is associate with potentially adverse effects.Further well-designed studies are necessary to confirm the efficacy of TCT in sports medicine.This review aims to summarize the application of TCT,discuss the issues surrounding TCT clinical research,and provide suggestions for applying traditional Chinese methods in the field of sports medicine. | Liang Kang Peijie Liu Aishi Peng Bingxin Sun Yumei He Zenghao Huang Minjia Wang Yushi Hu Benxiang He | 2021 | Sports Medicine and Health Science2021,3,1: | 0 |
| 14 | Construction of a Stimuli-Responsive DNAzyme-Braked DNA Nanomachine for the Amplified Imaging of miRNAs in Living Cells and Mice显示文摘Synthetic DNA motors have spurred considerable research interest as a way to interrogate biochemical processes that can further facilitate disease diagnosis.However,current direct sense-on-demand DNA motors are hampered by undesired signal leakage originating from their nonspecific stimulation prior to their arrival at target sites.Herein,we propose a DNAzyme-guided DNA amplification motor through the facile built-in of a stimuli-responsive DNAzyme brake to facilitate the in vivo sensitive imaging of biomarkers by minimizing the off-site signal leakage in living systems.To realize the on-site activation,the inactive DNAzyme DNA motor was encapsulated into the folate(FA)-modified zeolitic imidazolate framework-8(ZIF-8)/poly(D,L-lactic-co-glycolic acid(PLGA)nanovesicles.The FA interaction-promoted tumor-cell-selective delivery and the pH-responsive disassembly of ZIF-8/PLGA permitted sufficient release of DNAzyme cofactors to achieve on-site stimulation of DNAzyme for restoring the temporally caged DNA amplification motor in tumor cells where the endogenous miRNA target was thus specifically and sensitively analyzed.By integration of the cellselective delivery and the site-specific stimulation,our DNAzyme-guided DNA motor can realize the reliable imaging of tumor cells and provide a new toolbox for disease diagnosis. | Yingying Chen Mingzhu Yan Yushi Wang Jinhua Shang Shizhen He Yuhui Gao Chen Hong Xiaoqing Liu Fuan Wang | 2023 | CCS Chemistry2023,5,7: | 0 |
| 15 | Peroxymonosulfate activation by Fe-N-S co-doped tremella-like carbocatalyst for degradation of bisphenol A: Synergistic effect of pyridine N, Fe-Nx, thiophene S显示文摘Bisphenol A(BPA)has received increasing attention due to its long-term industrial application and persistence in environmental pollution.Iron-based carbon catalyst activation of peroxymonosulfate(PMS)shows a good prospect for effective elimination of recalcitrant contaminants in water.Herein,considering the problem about the leaching of iron ions and the optimization of heteroatoms doping,the iron,nitrogen and sulfur co-doped tremellalike carbon catalyst(Fe-NS@C)was rationally designed using very little iron,S-C_(3)N_(4) and low-cost chitosan(CS)via the impregnation-calcination method.The as-prepared Fe-NS@C exhibited excellent performance for complete removal of BPA(20 mg/L)by activating PMS with the high kinetic constant(1.492 min^(−1))in 15 min.Besides,the Fe-NS@C/PMS system not only possessed wide pH adaptation and high resistance to environmental interference,but also maintained an excellent degradation efficiency on different pollutants.Impressively,increased S-C_(3)N_(4) doping amount modulated the contents of different N species in Fe-NS@C,and the catalytic activity of Fe-NS@C-1-x was visibly enhanced with increasing SC_(3)N_(4) contents,verifying pyridine N and Fe-Nx as main active sites in the system.Meanwhile,thiophene sulfur(C-S-C)as active sites played an auxiliary role.Furthermore,quenching experiment,EPR analysis and electrochemical test proved that surface-bound radicals(·OH and SO_(4)^(·−))and non-radical pathways worked in the BPA degradation(the former played a dominant role).Finally,possible BPA degradation route were proposed.This work provided a promising way to synthesize the novel Fe,N and S co-doping carbon catalyst for degrading organic pollutants with low metal leaching and high catalytic ability. | Wenjin Chen Lele Lei Ke Zhu Dongdong He Hongmei He Xiulan Li Yumeng Wang Jin Huang Yushi Ai | 2023 | Journal of Environmental Sciences2023,,7: | 0 |
| 16 | Preparation and performance of LiNi_(0.8)Co_(0.2)O_2 cathode material based on Co-substituted α–Ni(OH)_2 precursor显示文摘Co-substituted α-Ni(OH)2 was synthesized by a novel microwave homogeneous precipitation method in the presence of urea. LiNi0.8Co0.2O2 cathode material was synthesized by calcining Co-substituted α-Ni(OH)2 precursor and LiOH·H2O at 900℃ for 10 h in flowing oxygen. XRD, FTIR, FESEM and electro- chemical tests were used to study the physical and the electrochemical performances of the materials. The results show that the prepared LiNi0.8Co0.2O2 compound has a good layered hexagonal structure. Moreover, the LiNi0.8Co0.2O2 cathode material demonstrates stable cyclability with a high initial specific discharge capacity of 183.9 mAh/g. The good electrochemical performance could be attributed to the uniform distribution of Ni2+ and Co2+ ions in the crystal structure and a minimal cation mixing in LiNi0.8Co0.2O2 host structure. | HE YuShi PEI Li LIAO XiaoZhen MA ZiFeng | 2008 | Chinese Science Bulletin2008,53,9: | 0 |