物理与电子科学学院

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物理与电子科学学院

2024-07-14 06:22| 来源: 网络整理| 查看: 265

老论文引用:https://publons.com/researcher/1585448/bingwenhu/

新论文目录:https://www.researchgate.net/profile/Bingwen_Hu/publications

重要报告:

2024年:

 * ENC会议/国际实验核磁共振会议(25分钟邀请报告,美国洛杉矶)

 * 第七届中国(国际)能源材料化学研讨会暨第八届锂硫电池国际会议(邀请报告)

 * 第二十届全国青年催化学术会议 (主旨报告)

 * 2024 Renewables可再生能源国际会议 (主旨报告)

 * 中国化学会第33届学术年会(第45分会:纳米器件、纳米表征与检测技术)(邀请报告)

 * APES2024 第十四届亚太电子顺磁/电子自旋共振国际研讨会 (邀请报告)

 * 中国化学会第二届电化学能量转换研讨会 (邀请报告)

2023年:

  * 中国化学会第33届学术年会(第四十四分会:纳米器件、纳米表征与检测技术,本人;第三十八分会:基础电化学,耿福山)

  * 全国电化学大会-电化学测试技术分会(邀请报告,大连)

  * 大连催化+国际峰会--能源转化表征分会(邀请报告)

  *  第八届全国储能科学与技术大会(主题报告,长春)

  * 全国电子顺磁共振波谱学-学术研讨会 (获奖报告,杭州)

2022年:

  * 中国物理学会秋季学术会议- F纳米和介观物理分会 (邀请报告,深圳,11.17-20)

2021年:

  * 2021全国波谱学学术会议(大会报告)

  * 第二届国际电化学能源系统会议(主题报告)

  * 科研云公益报告

  * 第11届国际介观结构材料研讨会

  * 第五届电化学能源技术前沿论坛-先进分析技术分会场

  * 固体核磁共振波谱学技术研讨会

  * 全国电子顺磁共振波谱学-学术研讨会

  * 第五届磁共振网络会议

  * 2021年分子磁性前沿研讨会

  * 第八届全国储能科学与技术大会(延期)

  * 全国固态电池研讨会  

  * 全国电化学大会-电化学测试技术分会(延期)

2019年及其以前:

   •2019 BCEIA北京分析测试学术报告会暨展览会(波谱学分会邀请报告)

   •2019第二十次全国电化学大会(邀请报告)

   •ANZMAG 2019(邀请报告)

   •2019亚洲-欧洲固态核磁共振国际交流研讨会”(Asian-European International Exchange Symposium in Solid State NMR)(邀请报告)

   •2019中法固体核磁共振波谱学讲习班 (主讲之一)

   •2019中日双边研讨会--配合物化学中的固态电化学Solid-state Electrochemistry in Coordination Chemistry(邀请报告)

   •2018第一届全国锂电池失效分析与测试技术研讨会(邀请报告)

   •2018第十届中国储能与动力电池及其关键材料学术研讨与技术交流会(邀请报告)

•第四届全国固态电池研讨会(邀请报告)

•第四届全国储能工程大会暨中日电池研讨会(主题报告)

•2018中国化学会第31届学术年会(纳米表征与检测技术分会-分会场邀请报告)

•2017国际磁共振大会ISMAR(报告),2015国际磁共振大会ISMAR(报告)

•2016全国波谱学学术会议(大会报告)

*2014全国波谱学学术会议(大会报告)

•2017中法固体核磁共振波谱学讲习班(主讲人之一),2013中法固体核磁共振波谱学讲习班(主讲人之一),2010中法固体核磁共振讲习班(主讲人之一)

•2017全国电子顺磁共振波谱学学术研讨会(30分钟主题报告)

•2017中国(国际)能源材料化学研讨会(报告)

* 2017第四届中美能源会议(报告)

•2015海峡两岸磁共振学术会议(邀请报告)

* 2013固体核磁共振及其在先进材料中应用研讨会(邀请报告)

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代表性论文:

(1)EPR-NMR

#  EPR for metal-ion batteries (including in-situ EPR and in-situ EPR imaging)

* Jiang, Y.; Lu, G.; Kang, S.; Geng, F.; Hu, B., All-Solid-State Batteries with Pre-plated Ultrathin Lithium Metal Enabled by No Pressure Holding and Characterized by In Situ Electron Paramagnetic Resonance Imaging. The Journal of Physical Chemistry Letters 2023, 14 (20), 4682-4687.

* Feng, H.;  Yang, Q.;  Li, C.;  Lin, Y.;  Liu, H.;  Zhang, N.; Hu, B., Completely Eradicating Singlet Oxygen in Li–O2 Battery via Cobalt(II)-Porphyrin Complex-Catalyzed LiOH Chemistry. The Journal of Physical Chemistry Letters 2023, 14 (4), 846-853.

* H. Liu, C. Li, C. Zhao, W. Tong, B. Hu, Coincident formation of trapped molecular O2 in oxygen-redox-active archetypical Li 3d oxide cathodes unveiled by EPR spectroscopy, Energy Storage Materials 50 (2022) 55-62.

* B. Hu, F. Geng, M. Shen, B. Hu, The study of electrochemical cycle for LiCoO2 by dual-mode EPR, Magnetic Resonance Letters  (2023) https://doi.org/10.1016/j.mrl.2022.04.002.

* C. Zhao, C. Li, H. Liu, Q. Qiu, F. Geng, M. Shen, W. Tong, J. Li, B. Hu, Coexistence of (O2)n− and Trapped Molecular O2 as the Oxidized Species in P2-Type Sodium 3d Layered Oxide and Stable Interface Enabled by Highly Fluorinated Electrolyte, Journal of the American Chemical Society 143(44) (2021) 18652-18664.

* F. Geng, Q. Yang, C. Li, M. Shen, Q. Chen, B. Hu, Mapping the Distribution and the Microstructural Dimensions of Metallic Lithium Deposits in an Anode-Free Battery by In Situ EPR Imaging, Chemistry of Materials 33(21) (2021) 8223-8234.

* Y. Lin, Q. Yang, F. Geng, H. Feng, M. Chen, B. Hu, Suppressing Singlet Oxygen Formation during the Charge Process of Li-O2 Batteries with a Co3O4 Solid Catalyst Revealed by Operando Electron Paramagnetic Resonance, The Journal of Physical Chemistry Letters 12(42) (2021) 10346-10352.

* B. Hu, F. Geng, M. Shen, C. Zhao, Q. Qiu, Y. Lin, C. Chen, W. Wen, S. Zheng, X. Hu, C. Li, B. Hu, A multifunctional manipulation to stabilize oxygen redox and phase transition in 4.6 V high-voltage LiCoO2 with sXAS and EPR studies, Journal of Power Sources 516 (2021) 230661.

* F. Geng, Q. Yang, C. Li, B. Hu, C. Zhao, M. Shen, B. Hu, Operando EPR and EPR Imaging Study on a NaCrO2 Cathode: Electronic Property and Structural Degradation with Cr Dissolution, The Journal of Physical Chemistry Letters 12(2) (2021) 781-786.

* Y. Liao, C. Li, X. Lou, X. Hu, Y. Ning, F. Yuan, B. Chen, M. Shen, B. Hu, Carbon-coated Li3V2(PO4)3 derived from metal-organic framework as cathode for lithium-ion batteries with high stability, Electrochimica Acta 271 (2018) 608-616.

* C. Li, X. Lou, Q. Yang, Y. Zou, B. Hu, Remarkable improvement in the lithium storage property of Co2(OH)2BDC MOF by covalent stitching to graphene and the redox chemistry boosted by delocalized electron spins, Chemical Engineering Journal 326 (2017) 1000-1008.

* C. Li, X. Lou, M. Shen, X. Hu, W. Yan, Y. Zou, W. Tong, B. Hu, High-capacity cobalt-based coordination polymer nanorods and their redox chemistry triggered by delocalization of electron spins, Energy Storage Materials 7 (2017) 195-202.

#  NMR for metal-ion batteries (including in-situ NMR)

  * Lu, G.; Geng, F.; Guo, N.; Yao, S.; Shen, M.; Hu, B., Probing the degradation of LiCoO2 in batteries subjected to high-voltage cycling with 17O solid-state NMR spectroscopy. Chemical Communications 2023.

* Liao, Y.; Feng, H.; Yang, Q.; Shen, M.; Jiang, Y.; Li, C.; Zhao, C.; Geng, F.; Hu, B., Oxygen Redox Activation at Initial Cycle to Improve Cycling Stability for the Na0.83Li0.12Ni0.22Mn0.66O2 System. ACS Applied Materials & Interfaces 2023, 15 (8), 10709-10717.

 * G. Lu, F. Geng, S. Gu, C. Li, M. Shen, B. Hu, Distinguishing the Effects of the Space-Charge Layer and Interfacial Side Reactions on Li10GeP2S12-Based All-Solid-State Batteries with Stoichiometric-Controlled LiCoO2, ACS Applied Materials & Interfaces  (2022).

 * C. Zhao, C. Li, Q. Yang, Q. Qiu, W. Tong, S. Zheng, J. Ma, M. Shen, B. Hu, Anionic redox reaction in Na-deficient layered oxide cathodes: Role of Sn/Zr substituents and in-depth local structural transformation revealed by solid-state NMR, Energy Storage Materials 39 (2021) 60-69.

*  Q. Qiu, C. Li, H. Liu, Y. Liao, C. Zhao, F. Geng, M. Shen, J. Li, W. Tong, B. Hu, NMR Evidence for the Multielectron Reaction Mechanism of Na3V2(PO4)3 Cathode and the Impact of Polyanion Site Substitution, J. Phys. Chem. C 125(28) (2021) 15200-15209.

* Y. Liao, C. Li, F. Geng, M. Shen, B. Hu, Na3V2(PO4)3 Revisited: A High-Resolution Solid-State NMR Study, The Journal of Physical Chemistry C 125(43) (2021) 24060-24066.

 * B. Hu, X. Lou, C. Li, F. Geng, C. Zhao, J. Wang, M. Shen, B. Hu, Reversible phase transition enabled by binary Ba and Ti-based surface modification for high voltage LiCoO2 cathode, Journal of Power Sources 438 (2019) 226954.

* F. Geng, M. Shen, B. Hu, Y. Liu, L. Zeng, B. Hu, Monitoring the evolution of local oxygen environments during LiCoO2 charging via ex situ 17O NMR, Chemical Communications 55(52) (2019) 7550-7553.

#  EPR & NMR for metal-ion batteries

* C. Li, C. Zhao, B. Hu, W. Tong, M. Shen, B. Hu, Unraveling the Critical Role of Ti Substitution in P2-NaxLiyMn1–yO2 Cathodes for Highly Reversible Oxygen Redox Chemistry, Chemistry of Materials 32(3) (2020) 1054-1063.

* F. Geng, B. Hu, C. Li, C. Zhao, O. Lafon, J. Trébosc, J.-P. Amoureux, M. Shen, B. Hu, Anionic redox reactions and structural degradation in a cation-disordered rock-salt Li1.2Ti0.4Mn0.4O2 cathode material revealed by solid-state NMR and EPR, Journal of Materials Chemistry A 8(32) (2020) 16515-16526.

* C. Li, M. Shen, X. Lou, B. Hu, Unraveling the Redox Couples of VIII/VIV Mixed-Valent Na3V2(PO4)2O1.6F1.4 Cathode by Parallel-Mode EPR and In Situ/Ex Situ NMR, The Journal of Physical Chemistry C 122(48) (2018) 27224-27232.

(2)固体核磁共振方法学:

• Broad-band homo-nuclear correlations assisted by (1)H irradiation for bio-molecules in very high magnetic field at fast and ultra-fast MAS frequencies;

• Broadband finite-pulse radio-frequency-driven recoupling (fp-RFDR) with (XY8)4(1) super-cycling for homo-nuclear correlations in very high magnetic fields at fast and ultra-fast MAS frequencies;

• Very-Long-Distance Correlations in Proteins Revealed by Solid-State NMR Spectroscopy;

• Composite pulses in directly and indirectly detected 14N MAS overtone spectroscopy

• Reduction of the 13 C cross-polarization experimental time for pharmaceutical samples with long T1 by ball milling in solid-state NMR;

(3)核磁共振+固体电解质:

• Phase Structure and Helical Jump Motion of Poly(ethylene oxide)/LiCF3SO3 Crystalline Complex: A High-Resolution Solid-State C-13 NMR Approach;

• Polymer chain diffusion and Li+ hopping of poly(ethylene oxide)/LiAsF6 crystalline polymer electrolytes as studied by solid state NMR and ac impedance;

• PEO-urea-LiTFSI ternary complex as solid polymer electrolytes;

(4)DFT计算磁共振参数:

• Optimizing the U_eff value for DFT+U calculation of paramagnetic solid-state NMR shifts by double Fermi-contact-shift verification

(5)综述

• Solid-state NMR studies on crystalline solid polymer electrolytes and important cathode materials for lithium-ion batteries, Annual Reports on NMR Spectroscopy,Annual Reports on NMR Spectroscopy, Academic Press, 2020, pp. 265-308.

• Solid-State High-Resolution NMR Studies on PEO-Based Crystalline Solid Polymer Electrolytes for Lithium-Ion Battery, Annual Reports on NMR Spectroscopy

• 面向金属离子电池研究的固体核磁共振和电子顺磁共振方法,物理化学学报

• 锂离子电池中重要正极材料体系的磁共振研究进展,储能科学与技术

* 金属离子电池中的磁共振:从核磁共振(NMR)到电子顺磁共振(EPR)/ Magnetic Resonance in metal-ion batteries: From NMR (Nuclear Magnetic Resonance) to EPR (Electron Paramagnetic Resonance),Journal of Electrochemistry 28(2) (2022) 2108421.

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