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    题名 作者 年代 出处 被引量
1Microarray analysis of differentially expressed microRNAs in nonregressed and regressed bovine corpus luteum tissue; microRNA-378may suppress luteal cell apoptosis by targeting the interferon gamma receptor 1 gene显示文摘Ma T Jiang H Gao Y Zhao Y.Dai L Xiong Q Xu Y Zhao Z Zhang J 0,,:1
2Viral hepatitis and proteinuria in an area endemic for hepatitis B and C infections: another chain of link?显示文摘J.‐F.HUANG W.‐L.CHUANG C.‐Y.DAI C.‐K.HO S.‐J.HWANG S.‐C.CHEN Z.‐Y.LIN L.‐Y.WANG W.‐Y.CHANG M.‐L.YU 2006Journal of Internal Medicine2006,,3:1
3Highly photocatalytic ZnO/In2O3 heteronanostructures synthesized by a copercipitation method显示文摘Z.Y.Wang B.B.Huang Y.Dai X.Y.Qin X.Y.Zhang H.X.Liu J.X.Yu 0,,:1
4Enhanced ferroelectric polarization with less wake-up effect and improved endurance of Hf_(0.5)Zr_(0.5)O_(2)thin films by implementing W electrode显示文摘This paper reports the improvement of electrical,ferroelectric and endurance of Hf_(0.5)Zr_(0.5)O_(2)(HZO)thinfilm capacitors by implementing W electrode.The W/HZO/W capacitor shows excellent pristine 2 P_(r)values of 45.1 gC/cm^(2)at±6 V,which are much higher than those of TiN/HZO/W(34.4μC/cm^(2))and W/HZO/TiN(26.9μC/cm^(2))capacitors.Notably,the maximum initial 2 P_(r)value of W/HZO/W capacitor can reach as high as 57.9μC/cm^(2)at±7.5 V.These strong ferroelectric polarization effects are ascribed to the W electrode with a fairly low thermal expansion coefficient which provides a larger in-plane tensile strain compared with TiN electrode,allowing for enhancement of o-phase formation.Moreover,the W/HZO/W capacitor also exhibits higher endurance,smaller wake-up effect(10.1%)and superior fatigue properties up to 1.5×10^(10)cycles compared to the TiN/HZO/W and W/HZO/TiN capacitors.Such improvements of W/HZO/W capacitor are mainly due to the decreased leakage current by more than an order of magnitude compared to the W/HZO/TiN capacitor.These results demonstrate that capping electrode material plays an important role in the enhancement of o-phase formation,reduces oxygen vacancies,mitigates wake-up effect and improves reliability.Dao Wang Yan Zhang Jiali Wang Chunlai Luo Ming Li Wentao Shuai Ruiqiang Tao Zhen Fan Deyang Chen Min Zeng Jiyan Y.Dai Xubing B.Lu J-M.Liu 2022Journal of Materials Science & Technology2022,,9:1
5The role of thyroid autoantibodies in the development of thyroid dysfunction in Taiwanese chronic hepatitis C patients with interferon‐alpha and ribavirin combination therapy显示文摘J‐F.Huang W‐L.Chuang C‐Y.Dai S‐C.Chen Z‐Y.Lin L‐P.Lee P‐L.Lee L‐Y.Wang M‐Y.Hsieh W‐Y.Chang M‐L.Yu 2006Journal of Viral Hepatitis2006,,6:1
6Altered Carbon Partitioning Enhances CO_(2)to Terpene Conversion in Cyanobacteria显示文摘Photosynthetic terpene production represents one of the most carbon and energy-efficient routes for converting CO_(2)into hydrocarbon.In photosynthetic organisms,metabolic engineering has led to limited success in enhancing terpene productivity,partially due to the low carbon partitioning.In this study,we employed systems biology analysis to reveal the strong competition for carbon substrates between primary metabolism(e.g.,sucrose,glycogen,and protein synthesis)and terpene biosynthesis in Synechococcus elongatus PCC 7942.We then engineered key“source”and“sink”enzymes.The“source”limitation was overcome by knocking out either sucrose or glycogen biosynthesis to significantly enhance limonene production via altered carbon partitioning.Moreover,a fusion enzyme complex with geranyl diphosphate synthase(GPPS)and limonene synthase(LS)was designed to further improve pathway kinetics and substrate channeling.The synergy between“source”and“sink”achieved a limonene titer of 21.0 mg/L.Overall,the study demonstrates that balancing carbon flux between primary and secondary metabolism can be an effective approach to enhance terpene bioproduction in cyanobacteria.The design of“source”and“sink”synergy has significant potential in improving natural product yield in photosynthetic species.Man Li Bin Long Susie Y.Dai James W.Golden Xin Wang Joshua S.Yuan 2022BioDesign Research2022,,1:0
7A Superconducting Magnet with Center Field of 10 T and φ100 mm Warm Bore显示文摘Aconduction-cooled superconducting magnet with central field of 10Tand warmbore of 100 mmwas designed based on a Nb3Sn and two NbTi superconducting coils.At the first stage,the NbTi coils havebeen fabricated andtested.Atwo-stage 4 KGifford-McMahon(GM) cryocooler withthe second-stage powerin1W,4.2Kis used to cool the magnet fromroomtemperature to 4 K.The superconducting magnet with thesame power supply has the operating current of 116A.The magnet can be rotated with a support frame to beoperated with either horizontal or vertical position.Apair of Bi-2223 hightemperature superconductingcurrentleads was employedto reduce heat leakage into 4.2Klevel.The NbTi coils reachto the operating current of120Awithout training effect to be observed duringchargingof the magnet during40 minutes chargingtime andgenerate the center field of 6.5T.The training effect inthe NbTi magnet directly cool-down by cryocooler andinter-winding support structure in magnet can be remarkablyimproved.The superconducting magnet has beenstably operatedfor more than 275 hours with 6.5T.In this paper,the detailed design,fabrication,stressanalysis and quench protection characteristics are presented.Q.Wang L.Yan B.Zhao S.Song Y.Dai Y.Lei H.Wang H.-C.Huang 2006电工电能新技术2006,25,4:0
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