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| 1 | Determination of Taurine in Biological Samples by High-Performance Liquid Chromatography Using 4-Fluoro-7-Nitrobenzofurazan as a Derivatizing Agent显示文摘Objective A highly sensitive and rapid high‐performance liquid chromatography method with pre‐column derivatization with 4‐fluoro‐7‐nitrobenzofurazan was developed for determination of taurine in biological samples,including plasma,brain,and liver.Methods The optimum derivatization reaction temperature was 70℃,and at this temperature the reaction was complete within 3 min.The derivatized taurine was separated using phosphate buffer (0.02 mol/L,pH 6.0):acetonitrile (84:16,v/v) as the mobile phase at a flow rate of 1.0 mL/min,and a column temperature of 25℃.The taurine derivatives were separated within 20 min (tR:14.5 min) and fluorometrically detected at 530 nm with excitation at 470 nm.Results The intra‐ and the inter‐day coefficients of variation for the method were 5.3% and 7.7%,respectively.The calibration curve was linear from 0.1 μmol/L to 30.0 μmol/L with a correlation coefficient of 0.9995.Conclusion This method can be used to determine the taurine contents in plasma,brain,and liver from normal rats and human plasma. | WANG XiFeng CHI DeFeng SU GuanMin LI Lin SHAO LiHua | 2011 | Biomedical and Environmental Sciences2011,24,5: | 13 |
| 2 | Li-ion battery material under high pressure:amorphization and enhanced conductivity of Li_4Ti_5O_(12)显示文摘Lithium titanium oxide(Li_4Ti_5O_(12),LTO),a‘zero-strain’anode material for lithium-ion batteries,exhibits excellent cycling performance.However,its poor conductivity highly limits its applications.Here,the structural stability and conductivity of LTO were studied using in situ high-pressure measurements and first-principles calculations.LTO underwent a pressure-induced amorphization(PIA)at 26.9 GPa.The impedance spectroscopy revealed that the conductivity of LTO improved significantly after amorphization and that the conductivity of decompressed amorphous LTO increased by an order of magnitude compared with its starting phase.Furthermore,our calculations demonstrated that the different compressibility of the Li O_6 and Ti O_6 octahedra in the structure was crucial for the PIA.The amorphous phase promotes Li^+ diffusion and enhances its ionic conductivity by providing defects for ion migration.Our results not only provide an insight into the pressure depended structural properties of a spinel-like material,but also facilitate exploration of the interplay between PIA and conductivity. | Yanwei Huang Yu He Howard Sheng Xia Lu Haini Dong Sudeshna Samanta Hongliang Dong Xifeng Li Duck Young Kim Ho-kwang Mao Yuzi Liu Heping Li Hong Li Lin Wang | 2019 | National Science Review2019,6,2: | 2 |
| 3 | Identification of polymorphisms in ultraconserved elements associated with clinical outcomes in locally advanced colorectal adenocarcinoma显示文摘 | Moubin Lin Cathy Eng Ernest T. Hawk Maosheng Huang Jie Lin Jian Gu Lee M. Ellis Xifeng Wu | 2012 | Cancer2012,,24: | 1 |
| 4 | Low weight loss rate and excellent plating process for high grade NdFeB magnet显示文摘 | Lin Xifeng Ding Kaihong Chen Gang | 2006 | J Iron Steel Res (International)2006,,: | 1 |
| 5 | Amorphous phosphorus chalcogenide as an anode material for lithiumion batteries with high capacity and long cycle life显示文摘The ever-increasing demands for modern energy storage applications drive the search for novel anode materials of lithium(Li)-ion batteries(LIBs) with high storage capacity and long cycle life, to outperform the conventional LIBs anode materials. Hence, we report amorphous ternary phosphorus chalcogenide(aP_(4)SSe_(2)) as an anode material with high performance for LIBs. Synthesized via the mechanochemistry method, the a-P_(4)SSe_(2) compound is endowed with amorphous feature and offers excellent cycling stability(over 1500 mA h g^(-1) capacity after 425 cycles at 0.3 A g^(-1)), owing to the advantages of isotropic nature and synergistic effect of multielement forming Li-ion conductors during battery operation. Furthermore,as confirmed by ex situ X-ray diffraction(XRD) and transmission electron microscope(TEM), the a-P_(4)SSe_(2)anode material has a reversible and multistage Li-storage mechanism, which is extremely beneficial to long cycle life for batteries. Moreover, the autogenous intermediate electrochemical products with fast ionic conductivity can facilitate Li-ion diffusion effectively. Thus, the a-P_(4)SSe_(2)electrode delivers excellent rate capability(730 mA h g^(-1)capacity at 3 A g^(-1)). Through in situ electrochemical impedance spectra(EIS) measurements, it can be revealed that the resistances of charge transfer(R_(SEI)) and solid electrolyte interphase(R_(Ct)) decrease along with the formation of Li-ion conductors whilst the ohmic resistance(R_(Ω)) remains unchanged during the whole electrochemical process, thus resulting in rapid reaction kinetics and stable electrode to obtain excellent rate performance and cycling ability for LIBs. Moreover, the formation mechanism and electrochemical superiority of the a-P_(4)SSe_(2)phase, and its expansion to P_(4)S_(3-x)Se_(x)(x = 0, 1, 2, 3) family can prove its significance for LIBs. | Jiale Yu Haiyan Zhang Yingxi Lin Junyao Shen Yiwen Xie Xifeng Huang Qiong Cai Haitao Huang | 2022 | Journal of Energy Chemistry2022,31,5: | 0 |
| 6 | Fine-needle aspiration for periprosthetic fluid removal after implantation of a remote internal-port tissue expander显示文摘Background:Use of internal filling ports in tissue expander–based reconstructions are advantageous because of easier self-care,lower infection rates,and fewer instances of capsule formation.The appearance of periprosthetic fluid accumulation after internal-port tissue expander implantation is a common complication that warrants treatment.In this study,we introduced a noninvasive method using fine-needle aspiration(FNA)to remove fluids accumulated after implantation of a remote internal-port tissue expander.Methods:In this study,245 patients who underwent implantation of remote internal-port tissue expanders in our hospital from July 1,2012,to July 1,2019,were included and divided into two groups.In the control group,patients underwent tissue expander implantation before July 1,2016,and large quantities of fluids were removed with surgical aspiration procedures in most cases.In the FNA group,the patients underwent implantation after July 1,2016,and large quantities of fluids were removed first with the FNA procedure.Patients’demographic data,indications for FNA application,and related complications were collected and analyzed.Results:Overall,395 expanders were placed in 245 patients.Postoperative management was similar in both groups.Fluids were managed with 23 expanders in the control group and with 31 expanders in the FNA group.There was no difference in the fluid aspiration rate between the two groups.The surgical aspiration rate was 11.1%(23/208)in the control group.The success rate of FNA was 90.3%(28/31).In the FNA group,the surgical aspiration rate was 1.6%(3/187),which was significantly lower than that in the control group.There were no significant differences in complications between the two groups.Conclusion:FNA can be used for periprosthetic fluid removal after the implantation of a remote internal-port tissue expander in most cases.This method is more convenient and safer than surgical aspiration for the postoperative management of internal-port tissue expander implantation. | Xifeng Lin Shuchen Gu Yashan Gao Hainan Zhu Bin Gu Feng Xie Qingfeng Li Tao Zan Haizhou Li | 2021 | Chinese Journal Of Plastic and Reconstructive Surgery2021,3,3: | 0 |