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3篇 您的检索式:作者名="Aleksey Yakovlev"
    题名 作者 年代 出处 被引量
1Fabrication and performance evaluation of novel transparent ceramics RE:Tb_(3)Ga_(5)O_(12)(RE=Pr,Tm,Dy)toward magneto-optical application显示文摘Transparent ceramics are at the heart of modern magneto-optical materials providing promising opportunities for Faraday isolators.1.0 at%RE:Tb3Ga5O12(rare earth(RE)=Pr,Tm,Dy)transparent ceramics were successfully prepared by air sintering and sequential HIP technique using the coprecipitated powders as the raw material.All the powders have shown to be a pure cubic terbium gallium garnet(TGG)phase and exhibit good dispersion.Additionally,a change could not be observed in particle shape with the different doped ions.After the two-step sintering,all the obtained ceramics have good optical quality,and the in-line transmittances at 1070 nm are higher than 80%.Moreover,no secondary phase can be detected from the microstructures.However,the pores which remain entrapped in the ceramics can be noted.The Verdet constant of ceramic samples is optimized by RE doping,and the Verdet constant at 632.8 nm is about−143 rad·T^(−1)·m^(−1),which is about 5%higher than that of TGG ceramics.Finally,the thermo-optical properties of 1.0 at%RE:TGG transparent ceramics are compared.The annealed TGG ceramic showed the best thermo-optical properties,and the thermally induced depolarization of 1.0 at%Ce:TGG and 1.0 at%Tm:TGG was inferior to that of annealed TGG ceramic.Xiaoying Li Ilya LSnetkov Aleksey Yakovlev Qiang Liu Xin Liu Ziyu Liu Penghui Chen Danyang Zhu Lexiang Wu Zhaoxiang Yang Tengfei Xie Haohong Chen Oleg Palashov Jiang Li 2021Journal of Advanced Ceramics2021,10,2:3
2Transitions between P21, P63 ( A), and P6a 22 modifications of SrAI2 04 by in situ high-temperature X-ray and neutron diffraction显示文摘Avdeev Maxim Yakovlev Sergey Yaremehenko Aleksey A 2007Journal of Solid State Chemistry2007,180,:1
3隧道纳米管--一种新的细胞间连接显示文摘细胞间通讯和物质交换是多细胞生物发育、组织修复和细胞生存的重要环节.最近发现细胞间存在隧道纳米管(tunneling nanotubes,TNTs)连接,并以此进行长距离通讯.TNTs是一种细胞间长距离的物理连接,能够在相连的细胞之间实现远程、定向的通讯.研究表明,不同细胞间TNTs在结构、形成机制和功能特性上存在相当大的差异.尽管这一新的研究领域取得了进展,但仍迫切需要进一步探索.本文综述TNTs的结构形态特征、生物功能、形成机制及其在疾病传播和疾病治疗中的应用前景,并讨论由TNTs介导的电耦联的研究现状.孙艳丽 Aleksey Yakovlev 刘丝丝 赵虎成 冯西桥 2021生物化学与生物物理进展2021,48,11:0
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