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7篇 您的检索式:作者名="Darezereshki"
    题名 作者 年代 出处 被引量
1One-step synthesis of maghemite ('/Fe2 03 ) nano- particles by wet chemical method显示文摘DAREZERESHKI E RANJBAR M BAKHTIARI F 2010Journal of Al- loys and Compounds2010,502,1:1
2A facile method to synthesis of CdO nanoparticles from spent Ni–Cd batteries显示文摘Gholam Reza Khayati Hamid Dalvand Esmaeel Darezereshki Ahmad Irannejad 2014Materials Letters2014,,:1
3One-step synthesis of maghemite (γ-Fe 2 O 3 ) nano-particles by wet chemical method显示文摘Esmaeel Darezereshki Mohammad Ranjbar Fereshteh Bakhtiari 2010Journal of Alloys and Compounds2010,,:1
4A facile fabrication of NiO nanoparticles from spent Ni-Cd batteries显示文摘DALVAND H KHAYATI G R DAREZERESHKI E 2014Mater Lett2014,130,:1
5Characterization of zinc sulfide (ZnS) nanoparticles Biosynthesized by Fusarium oxysporum显示文摘Saeed Mirzadeh Esmaeel Darezereshki Fereshteh Bakhtiari Mohammad Hassan Fazaelipoor Mohammad Raouf Hosseini 2012Materials Science in Semiconductor Processing2012,,:1
6Review of electrodeposition methods for the preparation of high-entropy alloys显示文摘High-entropy alloys(HEAs)are suitable for engineering applications requiring excellent mechanical,corrosion,thermal,and magnetic properties.In the last decade,electrodeposition has emerged as a promising synthesis technique for HEAs.Research has focused on the influence of procedure parameters on the deposition of different HEA layers and the effect of their microstructure on their corrosion and magnetic properties.This review of current literature provides comprehensive information on HEAs and the use of direct and pulse electrodeposition as a synthesis technique for these materials.This review also addresses the research gaps on HEA production via electrodeposition,such as using other ceramic particles instead of graphene oxide in composite structures based on HEAs.Zahra Shojaei Gholam Reza Khayati Esmaeel Darezereshki 2022International Journal of Minerals,Metallurgy and Materials2022,29,9:0
7氯离子存在条件下嗜热酸性生物浸出硫化铜精矿显示文摘本文研究了在生物浸出Midouk Shahrr-e-Babak铜矿复合体系中,氯离子对用极端嗜热菌Sulfolobus acidocalarius生物浸出硫化铜精矿的影响。细菌在pH=1.5时逐渐适应氯离子,说明溶液中氯离子的存在只是降低了细菌的繁殖和生长速度,但并没有阻止细菌的生长。当pH从2.0降低到1.5时,在前几天铜的浸出率逐步提高,9 d后铜的浸出率接近100%。随着溶液中固体含量从1%增加到3%,铜浸出时间延长了6 d。在pH=1.5、固体含量为1%、Na Cl浓度为0.5 mol/L和1.0 mol/L的条件下,9 d后的浸出率分别为98%和80%;21 d后,浸出率分别达到近100%和90%。在无微生物但其他条件相同的情况下,铜的浸出率仅为62%。Mahboube BAKHSHOUDE Esmaeel DAREZERESHKI Fereshteh BAKHTIARI 2023Journal of Central South University2023,30,3:0
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