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10篇 您的检索式:作者名="Darekar"
    题名 作者 年代 出处 被引量
1Cognitive testing in early-Phase clinical trials:development of a rapid computerized test battery and aPPlication in a simulated phase Ⅰ study显示文摘Collie A Darekar A Weissgerber G 0,,04:1
2Induction of the blood-brain barrier specific HT7 and neurothelin epitopes in endothelial cells of the chick chorioallantoic vessels by a soluble factor derived from astrocytes显示文摘Lobrinus JA Jillerat-Jeanneret L Darekar P 1992Brain Res Dev Brain Res1992,70,:1
3Reaction of cucumber cuhivars and lines to root-knot nematode显示文摘Darekar K S Bele P P 1990International Nematology Network Newsletter1990,7,:1
4Cognitive testing in early phase clinical trials:Development of a rapid computerized test bat-tery and application in a simulated phase I study显示文摘Collie A Darekar A Weissgerber G 0,,04:1
5Comparison of the efficacy and tolerability of diclofenac gel(voltarol emulgel) and felbinac gel (traxam) in treatment of soft tissue injuries显示文摘Bouchier-hayes TA Rotman H Darekar BS 1990Br J Clin Pract1990,44,8:1
6Proof of Concept Trial of Tanezumab for the Treatment of Symptoms Associated With Interstitial Cystitis显示文摘R.J. Evans R.M. Moldwin N. Cossons A. Darekar I.W. Mills D. Scholfield 2011The Journal of Urology2011,,5:1
7Cognitive testing in early-phase clinical trials: development of a rapid computerized test battery and application in a simulated Phase I study 显示文摘Collie A Darekar A Weissgerber G 2007Contemp Clin Trials2007,28,4:1
8Enhancement of dissolution rate of lansoprazole using liquisolid tablet technique显示文摘Kasture S V Gondkar S B Darekar A B 2011Int J Pharm2011,3,2:1
9Cognitive testing in early-phase clinical trials:Development of a rapid computerized test battery and application in a simulated phase I study显示文摘Collie A Darekar A Weissgerber G 2007Contemp Clin Trials2007,28,4:1
10Hyperfine splitting and ferromagnetism in CdS:Mn nanoparticles for optoelectronic device applications显示文摘Manganese(Mn)doped cadmium sulphide(Cd S)nanoparticles were synthesized using a chemical method.It was possible to decrease Cd S:Mn particle size by increasing Mn concentration.Investigation techniques such as ultraviolet-visible(UV-Vis)absorption spectroscopy and photoluminescence(PL)spectroscopy were used to determine optical properties of Cd S:Mn nanoparticles.Size quantization effect was observed in UV-Vis absorption spectra.Quantum efficiency for luminescence or the internal magnetic field strength was increased by doping Cd S nanoparticles with Mn element.Orange emission was observed at wavelength~630 nm due to ^(4)T_1→^(6)A_1 transition.Isolated Mn~(2+)ions arranged in tetrahedral coordination are mainly responsible for luminescence.Luminescence quenching and the effect of Mn doping on hyperfine interactions in the case of Cd S nanoparticles were also discussed.The corresponding weight percentage of Mn element actually incorporated in doping process was determined by atomic absorption spectroscopy(AAS).Crystallinity was checked and the average size of nanoparticles was estimated using the X-ray diffraction(XRD)technique.Cd S:Mn nanoparticles show ferromagnetism at room temperature.Transmission electron microscopy(TEM)images show spherical clusters of various sizes and selected area electron diffraction(SAED)patterns show the polycrystalline nature of the clusters.The electronic states of diluted magnetic semiconductors(DMS)ofⅡ-Ⅵgroup Cd S nanoparticles give them great potential for applications due to quantum confinement.In this study,experimental results and discussions on these aspects have been given.Madhavi Sharad Darekar Praveen Beekanahalli Mokshanatha 2023Journal of Semiconductors2023,44,12:0
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