Search Results - "Avdeev, Maxim"

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  1. 1

    ECHIDNA: a decade of high‐resolution neutron powder diffraction at OPAL by Avdeev, Maxim, Hester, James R.

    Published in Journal of applied crystallography (01-12-2018)
    “…The ECHIDNA high‐resolution neutron powder diffractometer at the 20 MW OPAL research reactor in Australia produces high‐quality data for a broad spectrum of…”
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  2. 2

    3DBVSMAPPER: a program for automatically generating bond-valence sum landscapes by Sale, Matthew, Avdeev, Maxim

    Published in Journal of applied crystallography (01-10-2012)
    “…A computer program, 3DBVSMAPPER, was developed to generate bond‐valence sum maps and bond‐valence energy landscapes with minimal user intervention. The program…”
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  3. 3

    P2-Na0.6[Cr0.6Ti0.4]O2 cation-disordered electrode for high-rate symmetric rechargeable sodium-ion batteries by Wang, Yuesheng, Xiao, Ruijuan, Hu, Yong-Sheng, Avdeev, Maxim, Chen, Liquan

    Published in Nature communications (24-04-2015)
    “…Most P2-type layered oxides exhibit Na + /vacancy-ordered superstructures because of strong Na + –Na + interaction in the alkali metal layer and charge…”
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  4. 4
  5. 5

    Predicting creep rupture life of Ni-based single crystal superalloys using divide-and-conquer approach based machine learning by Liu, Yue, Wu, Junming, Wang, Zhichao, Lu, Xiao-Gang, Avdeev, Maxim, Shi, Siqi, Wang, Chongyu, Yu, Tao

    Published in Acta materialia (15-08-2020)
    “…Creep rupture life is a key material parameter for service life and mechanical properties of Ni-based single crystal superalloy materials. Therefore, it is of…”
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  6. 6

    Lithiated Prussian blue analogues as positive electrode active materials for stable non-aqueous lithium-ion batteries by Zhang, Ziheng, Avdeev, Maxim, Chen, Huaican, Yin, Wen, Kan, Wang Hay, He, Guang

    Published in Nature communications (16-12-2022)
    “…Prussian blue analogues (PBAs) are appealing active materials for post-lithium electrochemical energy storage. However, PBAs are not generally suitable for…”
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  7. 7

    Layered-rocksalt intergrown cathode for high-capacity zero-strain battery operation by Li, Ning, Sun, Meiling, Kan, Wang Hay, Zhuo, Zengqing, Hwang, Sooyeon, Renfrew, Sara E., Avdeev, Maxim, Huq, Ashfia, McCloskey, Bryan D., Su, Dong, Yang, Wanli, Tong, Wei

    Published in Nature communications (20-04-2021)
    “…The dependence on lithium-ion batteries leads to a pressing demand for advanced cathode materials. We demonstrate a new concept of layered-rocksalt intergrown…”
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  8. 8

    Coupled Cation–Anion Dynamics Enhances Cation Mobility in Room-Temperature Superionic Solid-State Electrolytes by Zhang, Zhizhen, Roy, Pierre-Nicholas, Li, Hui, Avdeev, Maxim, Nazar, Linda F

    Published in Journal of the American Chemical Society (11-12-2019)
    “…Single-ion conducting solid electrolytes are gaining tremendous attention as essential materials for solid-state batteries, but a comprehensive understanding…”
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  9. 9

    Correlated Migration Invokes Higher Na+‐Ion Conductivity in NaSICON‐Type Solid Electrolytes by Zhang, Zhizhen, Zou, Zheyi, Kaup, Kavish, Xiao, Ruijuan, Shi, Siqi, Avdeev, Maxim, Hu, Yong‐Sheng, Wang, Da, He, Bing, Li, Hong, Huang, Xuejie, Nazar, Linda F., Chen, Liquan

    Published in Advanced energy materials (01-11-2019)
    “…Na super ion conductor (NaSICON), Na1+nZr2SinP3–nO12 is considered one of the most promising solid electrolytes; however, the underlying mechanism governing…”
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  10. 10

    Experimental Observation of Long-Range Magnetic Order in Icosahedral Quasicrystals by Tamura, Ryuji, Ishikawa, Asuka, Suzuki, Shintaro, Kotajima, Takahiro, Tanaka, Yujiro, Seki, Takehito, Shibata, Naoya, Yamada, Tsunetomo, Fujii, Takenori, Wang, Chin-Wei, Avdeev, Maxim, Nawa, Kazuhiro, Okuyama, Daisuke, Sato, Taku J

    Published in Journal of the American Chemical Society (01-12-2021)
    “…Quasicrystals (QCs), first discovered in 1984, generally do not exhibit long-range magnetic order. Here, we report on long-range magnetic order in the real…”
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  11. 11

    High-throughput screening platform for solid electrolytes combining hierarchical ion-transport prediction algorithms by He, Bing, Chi, Shuting, Ye, Anjiang, Mi, Penghui, Zhang, Liwen, Pu, Bowei, Zou, Zheyi, Ran, Yunbing, Zhao, Qian, Wang, Da, Zhang, Wenqing, Zhao, Jingtai, Adams, Stefan, Avdeev, Maxim, Shi, Siqi

    Published in Scientific data (21-05-2020)
    “…The combination of a materials database with high-throughput ion-transport calculations is an effective approach to screen for promising solid electrolytes…”
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  12. 12

    Dimensional reduction by geometrical frustration in a cubic antiferromagnet composed of tetrahedral clusters by Okuma, Ryutaro, Kofu, Maiko, Asai, Shinichiro, Avdeev, Maxim, Koda, Akihiro, Okabe, Hirotaka, Hiraishi, Masatoshi, Takeshita, Soshi, Kojima, Kenji M., Kadono, Ryosuke, Masuda, Takatsugu, Nakajima, Kenji, Hiroi, Zenji

    Published in Nature communications (19-07-2021)
    “…Dimensionality is a critical factor in determining the properties of solids and is an apparent built-in character of the crystal structure. However, it can be…”
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  13. 13
  14. 14

    High-Performance P2-Phase Na2/3Mn0.8Fe0.1Ti0.1O2 Cathode Material for Ambient-Temperature Sodium-Ion Batteries by Han, Man Huon, Gonzalo, Elena, Sharma, Neeraj, López del Amo, Juan Miguel, Armand, Michel, Avdeev, Maxim, Saiz Garitaonandia, Jose Javier, Rojo, Teófilo

    Published in Chemistry of materials (12-01-2016)
    “…High-performance Mn-rich P2-phase Na2/3Mn0.8Fe0.1Ti0.1O2 is synthesized by a ceramic method, and its stable electrochemical performance is demonstrated. 23Na…”
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  15. 15

    Magnetic frustration induced large magnetocaloric effect in the absence of long range magnetic order by Pakhira, Santanu, Mazumdar, Chandan, Ranganathan, R., Avdeev, Maxim

    Published in Scientific reports (04-08-2017)
    “…We have synthesized a new intermetallic compound Ho 2 Ni 0.95 Si 2.95 in a single phase with a defect crystal structure. The magnetic ground state of this…”
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  16. 16

    Structural and Electrochemical Impacts of Mg/Mn Dual Dopants on the LiNiO2 Cathode in Li-Metal Batteries by Mu, Linqin, Kan, Wang Hay, Kuai, Chunguang, Yang, Zhijie, Li, Luxi, Sun, Cheng-Jun, Sainio, Sami, Avdeev, Maxim, Nordlund, Dennis, Lin, Feng

    Published in ACS applied materials & interfaces (18-03-2020)
    “…Doping chemistry has been regarded as an efficient strategy to overcome some fundamental challenges facing the “no-cobalt” LiNiO2 cathode materials. By…”
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  17. 17

    Neutron scattering studies on ionic diffusion behaviors of superionic α-Cu2−δ Se by Li, Lisi, Liu, Huili, Avdeev, Maxim, Yu, Dehong, Danilkin, Sergey, Wang, Meng

    Published in Applied physics letters (10-10-2022)
    “…We present studies on crystal structure and ionic diffusion behaviors of superionic Cu2−δ Se (δ = 0, 0.04, and 0.2) by utilizing neutron powder diffraction and…”
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  18. 18

    Neutron Powder Diffractometer HERMES — After the Decade-Long Shutdown by Nambu, Yusuke, Ikeda, Yoichi, Taniguchi, Takanori, Ohkawara, Manabu, Avdeev, Maxim, Fujita, Masaki

    Published in Journal of the Physical Society of Japan (15-09-2024)
    “…Obtaining structural information has always been of primary importance in condensed matter physics, chemistry, and materials science. To refine crystal and…”
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  19. 19

    Generative artificial intelligence and its applications in materials science: Current situation and future perspectives by Yue Liu, Zhengwei Yang, Zhenyao Yu, Zitu Liu, Dahui Liu, Hailong Lin, Mingqing Li, Shuchang Ma, Maxim Avdeev, Siqi Shi

    Published in Journal of Materiomics (01-07-2023)
    “…Generative Artificial Intelligence (GAI) is attracting the increasing attention of materials community for its excellent capability of generating required…”
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  20. 20

    A Database of Ionic Transport Characteristics for Over 29 000 Inorganic Compounds by Zhang, Liwen, He, Bing, Zhao, Qian, Zou, Zheyi, Chi, Shuting, Mi, Penghui, Ye, Anjiang, Li, Yajie, Wang, Da, Avdeev, Maxim, Adams, Stefan, Shi, Siqi

    Published in Advanced functional materials (01-08-2020)
    “…Transport characteristics of ionic conductors play a key role in the performance of electrochemical devices such as solid‐state batteries, solid‐oxide fuel…”
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