维普中文期刊产品整合服务
22篇 您的检索式:作者名="Georgian"
    题名 作者 年代 出处 被引量
1Joint estima-tion of technology adoption and land allocation withimplications for the design of conservation policy显示文摘Moreno Georgian Sunding David L 2005American Journal of Agricultural Economics2005,,11:1
2Sonography of palpable breast cancer显示文摘 Taylor KJ Madjar H 2000J Clin Ultrasound2000,28,5:1
3Estimating flow and flux of ground water discharge using water temperature and velocity显示文摘Becker M W Georgian T Ambrose H 0,,:1
4Treatment of cotton textile wastewater using lime and ferrous sulfat e 显示文摘Georgian D Aivazidis A Hatiras J 2003Water Research2003,37,:1
5Estimating flow and flux of ground water discharge using water temperature and velocity显示文摘BECKER M W GEORGIAN T AMBROSE H 2004Journal of Hydrology2004,296,1:1
6Breast mass detected after blunt chest trauma显示文摘SULLIVAN TP GEORGIAN - SMITH D 1998A JR1998,171,1:1
7The mammary hamartoma: appreciation of additional imaging characteristics 显示文摘Georgian Smith D Kricun B McKee G 2004J Ultrasound Med2004,23,12:1
8Seasonal production dynamics in a guild of periphyton-grazing insects in a southern Appalachian stream显示文摘Georgian T Wallace JB 0,,:1
9Estimating flow and flux of ground water discharge using water temperature and velocity 显示文摘Becker M W Georgian T Ambrose H 2004Journal of Hydrology2004,296,:1
10Fabric texture analysis using computer vision techniques显示文摘WANG X GEORGIANS N D PETRIU E M 2011IEEE Transactions on Instrumentation and Measurement2011,60,1:1
11Role of therapeutic hypothermia in improving outcome after traumatic brain injury: a systematic review显示文摘Georgian AP Manara AR 2013Br J Anaesth2013,110,3:1
12Estima- ting Flow and Flux of Ground Water Discharge Using Water Temperature and Velocity 显示文摘BECKER M GEORGIAN T AMBROSE H 2004Journal of Hydrology2004,296,1:1
13Efficacy of leukocyte- and platelet-rich fibrin in wotmd healing: a randomized controlled clini- cal trial显示文摘Chignon-Sicard B Georgian CA Font as E 2012Plast Reconstr Surg2012,130,6:1
14Expression of active human tissuetype plasminogen activator in Escherichia coli 显示文摘Qiu J Swartz J R Georgian G 1998Appl Environ Micrebiol1998,64,12:1
15Thyroid dysfunction and autoantibodies in early pregnancy are associated with increased risk of gestational diabetes and adverse birth outcomes 显示文摘Karakosta P Alegakis D Georgian V 2012J Clin Endocrinol Metab2012,97,12:1
1610-year exercise training in chronic heart failure : a randomized controlled trial 显示文摘Belardinelli R Georgian D Cianci G 2012J Am Coil Cardiol2012,60,16:1
17The Synthesis of 5-oxoperhydroisoquinolines显示文摘V Georgian R J Harrisson L L Skaletzky 1962J Org Chem1962,,:1
18Integrating knowledge management tools for government information 显示文摘GEORGIAN P PAPATHEODOROU C MOSCHOPOULOS D 2004Government Information Quarterly2004,,21:1
19Activation of 2D MoS_(2) electrodes induced by high-rate lithiation processes显示文摘MoS_(2) is a highly promising material for application in lithium-ion battery anodes due to its high theoretical capacity and low cost.However,problems with a fast capacity decay over cycling,especially at the first cycles,and poor rate performance have deterred its practical implementation.Herein,electrodes comprised solely of few-layers 2D MoS_(2) nanosheets have been manufactured by scalable liquid-phase exfoliation and spray deposition methods.The long-standing controversy questioning the reversibility of conversion processes of MoS_(2)-based electrodes was addressed.Raman studies revealed that,in 2D MoS_(2) electrodes,conversion processes are indeed reversible,where nanostructure played a key role.Cycling of the electrodes at high current rates revealed an intriguing phenomenon consisting of a continuously increasing capacity after ca.100-200 cycles.This phenomenon was comprehensively addressed by a variety of electrochemical and microscopy methods that revealed underlying physical activation mechanisms that involved a range of profound electrode structural changes.Activation mechanisms delivered a capacitive electrode of a superior rate performance and cycling stability,as compared to the corresponding pristine electrodes,and to MoS_(2) electrodes previously reported.Herein,we have devised a methodology to overcome the problem of cycling stability of 2D MoS_(2) electrodes.Moreover,activation of electrodes constitutes a methodology that could be applied to enhance the energy storage performance of electrodes based on other 2D nanomaterials,or combinations thereof,strategically combining chemistries to engineer electrodes of superior energy storage properties.Tianzhu Liu Georgian Melinte Oleksandr Dolotko Michael Knapp Beatriz Mendoza-Sánchez 2023Journal of Energy Chemistry2023,,3:0
20二氧化钛气凝胶基质中金纳米粒子的光催化活性和结构(英文)显示文摘TiO2 -Au aerogels containing different amounts of gold nanoparticles of different sizes (5 and 16 nm) were successfully synthesized using a sol-gel procedure, and were tested for salicylic acid photodegradation under UV irradiation. The structure and morphology of the obtained materials were investigated using X-ray diffraction, transmission electron microscopy, and N2 adsorption-desorption measurements. UV-Vis spectroscopy was used to study the optical properties. The effects of the gold nanoparticles on the TiO2 crystallization process were twofold, as follows: (i) the number of crystallized zones was strongly related to the concentration of the gold nanoparticles, and (ii) the smaller gold particles increased the time taken for the crystallization of the samples. It was found that the noble metal-doped samples exhibited higher degradation rates compared with bare titania. It was found that the most active photocatalyst in each studied system was the sample with the highest concentration of gold nanoparticles. Additionally, the highest degradation rate value was obtained with the smallest Au nanoparticles (46.4 10-3 μmol/(L·s).Zsolt PAP Andreea RADU Izabella Jolan HIDI Georgian MELINTE Lucian DIAMANDESCU Traian POPESCU Lucian BAIA Virginia DANCIU Monica BAIA 2013催化学报2013,34,4:0
返回顶部 每页显示:
共2页 首页 上一页 第1页 下一页 末页 /2 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费