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Ñо¿Æ«Ïò£º´ÓÊÂÐÂÄÜÔ´ÖÊÁÏÓëÆ÷¼þÁìÓòµÄÑо¿ £¬Ôڵ缫ÖÊÁϵĿɿØÖƱ¸¡¢½á¹¹ÆÊÎö¡¢»úÀí̽ÌÖÒÔ¼°Ô­Î»Àú³Ì±íÕ÷µÈ·½ÃæÈ¡µÃÁ˶àÏîÔ­´´ÐÔЧ¹û¡£ÏÖÔÚÕýÔÚ¿ªÕ¹£º£¨1£©ÃæÏò¼«¶ËÇéÐθ߱ÈÄܶþ´Îµç³ØÑо¿Æ«Ïò £¬¾Û½¹¸ßÐÔÄÜÖÊÁÏϵͳµÄÒªº¦ÊÖÒպ͹²ÐÔ¿ÆÑ§ÎÊÌâ £¬Éú³¤ÐÂÐ͵缫ÖÊÁÏÑÐÖÆµÄÐÂ˼Ð÷ºÍÐÂÒªÁì¡££¨2£©¾Û½¹ÖØÖÊÓÍ̼ÖÊ»¯µÄÐÂÒªÁìºÍÐÂÊÖÒÕ £¬¶ÔÆä½á¹¹ÊµÑ鶨ÏòÉè¼Æ¡¢½á¹¹¼ô²Ã/¸´ºÏ¡¢±í½çÃæµ÷¿ØÒÔʵÏÖ¹¦Ð§»¯ÔöÇ¿ £¬Ö¸µ¼¿ªÕ¹¸ßÐÔÄÜµç³ØÏµÍ³Òªº¦ÖÊÁϵÄÓ¦Óûù´¡Ñо¿¡££¨3£©Î§Èƶ๦Ч´ß»¯ÖÊÁÏ £¬¿ªÕ¹¸ßÐÔÄܹ¦Ð§»¯µç´ß»¯¼ÁÉè¼ÆÑо¿ £¬ÓÃÓÚÌá¸ß¶àµç×Óת»»µç³Ø¡¢µç½âË®µÈÄÜԴת»»ºÍ´æ´¢ÐÔÄÜ¡£ÁªÏµÓÊÏ䣺yongpengcui@cup.edu.cn¡£

1.»ù±¾¼òÀú

2011.09-2015.07 £¬Çൺ¿Æ¼¼´óѧ £¬ÖÊÁÏ¿ÆÑ§Ó빤³Ì £¬Ñ§Ê¿

2015.09-2020.06 £¬Öйúº£Ñó´óѧ £¬º£ÑóÖÊÁÏ¿ÆÑ§Ó빤³Ì £¬²©Ê¿

2020.09-2023.08 £¬¿­Ê±£¨»ª¶«£© £¬ÖÊÁÏ¿ÆÑ§Ó빤³Ì £¬²©Ê¿ºó¡¢¸±½ÌÊÚ

2023.10-ÖÁ½ñ £¬¿­Ê±£¨±±¾©£© £¬ÐÂÄÜÔ´ÓëÖÊÁÏѧԺ £¬ÌØÈθÚλ½ÌÊÚ£¨Ð£ÓÅÇࣩ

2.ÕÐÉúѧ¿ÆºÍÑо¿Æ«Ïò

[1] ÕÐÉúѧ¿Æ£ºÐÂÄÜÔ´¿ÆÑ§Ó빤³Ì£¨²©£©¡¢ÐÂÄÜÔ´¿ÆÑ§Ó빤³Ì£¨Ë¶£©¡¢Çå½àÄÜÔ´ÊÖÒÕ£¨Ë¶£©

[2] Ñо¿Æ«Ïò£ºÄÜÔ´»¯Ñ§ÖÊÁÏ¡¢µç»¯Ñ§´¢ÄÜ¡¢µç´ß»¯

3.Ö÷ÊڿγÌ

¡¶ÐÂÄÜԴרҵµ¼ÂÛ¡·¡¢¡¶ÐÂÄÜÔ´Óà´¢ÄÜÊÖÒÕÇ°ÑØ¡·¡¢¡¶Ñо¿Éú׿Խ¹¤³ÌʦʵÑé¿Î³Ì¡·¡¢¡¶Ì«ÑôÄÜת»¯ÖÊÁÏÖÆ±¸ÓëÓ¦Óá·µÈ

4.ÔÚÑÐÖ÷ÒªÏîÄ¿

[1] ¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ð£º³¬ÊèÉ¢WS2/WSe2»ù¸º¼«ÖÊÁϵÄÓÕµ¼ÐÞ½¨¼°Æä´¢¼Ø»úÖÆ £¬2022-2024 £¬Ö÷³Ö¡£

[2] ±±¾©ÊпƼ¼ÐÂÐÇÍýÏë£ºÖØÖÊÓÍ̼ÖÊ»¯ÔÚ´¢ÄÜÖеĸ߸½¼ÓֵʹÓà £¬2024-2027 £¬Ö÷³Ö¡£

[3] ¹ú¼Ò×ÊÖú²©Ê¿ºóÑо¿Ö°Ô±Bµµ£º¸ß±ÈÄÜ¡¢³¤Ñ­»·½ðÊô-Áòµç³ØÒªº¦¹²ÐÔÎÊÌâÑо¿ £¬2023-2025 £¬Ö÷³Ö¡£

[4] Çå½àµÍ̼ÄÜÔ´½ÌÓý²¿¹¤³ÌÑо¿ÖÐÐÄ¿ª·Å¿ÎÌ⣺°ÐÏòÐ͵ç´ß»¯¼ÁÉè¼ÆÓë¼Ø-Áòµç³ØÐÔÄÜÓÅ»¯Ñо¿ £¬2024-2025 £¬Ö÷³Ö¡£

[5] ¿­Ê±£¨±±¾©£©ÓÅÒìÇàÄêѧÕßÏîÄ¿£º¼ØÀë×Ó´¢ÄÜϵͳҪº¦µç¼«ÖÊÁϵĽṹÉè¼Æ¡¢¶¨Ïò¸ÄÐÔÓëÓ¦Óà £¬2023-2026 £¬Ö÷³Ö¡£

5.Íê³ÉÖ÷ÒªÏîÄ¿

[1] ɽ¶«Ê¡Á¢ÒìÍŶӼ°È˲ÅÍýÏë--¸ßÐÔÄܼî½ðÊôÀë×Óµç³Ø¸º¼«ÖÊÁÏ £¬2021-2023 £¬Ö÷³Ö¡£

[2] ɽ¶«Ê¡×ÔÈ»¿ÆÑ§»ù½ð£ºÎÙ»ù´¢¼Ø¸º¼«ÖÊÁÏÐÞ½¨¼°´¢¼Ø»úÖÆ £¬2022-2024 £¬Ö÷³Ö¡£

[3] Öйú²©Ê¿ºó¿ÆÑ§»ù½ð£º¿Õ¼ä-»¯Ñ§Ë«ÖØÏÞÓòÓëµç´ß»¯Ð­Í¬ÔöÇ¿¼î½ðÊôÀë×Óµç³ØÁ×@̼¸º¼«ÐÔÄÜÑо¿ £¬2020-2022 £¬Ö÷³Ö¡£

[4] Öйú²©Ê¿ºóÓÅÒìѧÊõ׍ָ³öÊ飺¼ØÀë×Óµç³ØÖÊÁÏÓëÊÖÒÕ £¬2020-2024 £¬Ö÷³Ö¡£

[5] ÆóÒµºáÏòÊÖÒÕ¿ª·¢£ºÓ²Ì¼¸º¼«ÖÊÁÏ´¢ï®/´¢ÄÆ»úÖÆ¿ª·¢ £¬2024-2025 £¬Ö÷³Ö¡£

6.´ú±íÐÔÂÛÎÄ

[1] "Mitigating the Kinetic Hysteresis of Co-Free Ni-Rich Cathodes Via Gradient Penetration of Nonmagnetic Silicon." Angewandte Chemie-International Edition , 2024, (IF=16.1)

[2] "Li/Ni Intermixing: The Real Origin of Lattice Oxygen Stability in Co-Free Ni-Rich Cathode Materials." Advanced Energy Materials , 2024, (IF=27.8)

[3] "Elaborating the Crystal Water of Prussian Blue for Outstanding Performance of Sodium Ion Batteries." ACS Nano , 2024, (IF=17.1)

[4] "Rare-Earth Ions Induced Pre-Excitation of Intercalation-Conversion Anode to Achieve Fast Potassium-Ion Storage." Energy Storage Materials , 2024, (IF=20.4)

[5] "Defect-Engineered Tinox Catalyst Targeted to Activate Rate-Determining Step for Highly Efficient K-Ses2 Batteries." Energy Storage Materials , 2024, (IF=20.4)

[6] "Intermolecular N-N Stacking of Oligomeric Naphthalene Cathodes Facilitate High Performance Aluminum Ion Battery." Chemical Engineering Journal , 2024, (IF=13.3)

[7] "Multiple Working Mechanisms Enabled by an Iodized Organic Salt Cathode for High Energy Density Potassium-Organic Batteries." ACS Energy Letters , 2023, (IF=22.0)

[8] "A Static Tin-Manganese Battery with 30000-Cycle Lifespan Based on Stabilized Mn3+/Mn2+Redox Chemistry." ACS Nano , 2023, (IF=17.1)

[9] "Embedding Oxophilic Rare-Earth Single Atom in Platinum Nanoclusters for Efficient Hydrogen Electro-Oxidation." Nature Communications , 2023, (IF=16.6)

[10] "Revealing the Origin of High-Thermal-Stability of Single-Crystal Ni-Rich Cathodes toward Higher-Safety Batteries." Nano Energy , 2023, (IF=17.6)

[11] "Pseudocapacitance-Rich Carbon Nanospheres with Graphene Protective Shield Achieving Favorable Capacity-Cyclability Combinations of K-Ion Storage." Chemical Engineering Journal , 2023, (IF=13.3)

[12] "Polycyclic Aromatic Hydrocarbons as a New Class of Promising Cathode Materials for Aluminum-Ion Batteries." Angewandte Chemie-International Edition , 2022, (IF=16.1)

[13] "Platinum-Free Electrocatalysts for Hydrogen Oxidation Reaction in Alkaline Media." Nano Energy , 2022, (IF=17.6)

[14] "Dual Carbon Li-Ion Capacitor with High Energy Density and Ultralong Cycling Life at a Wide Voltage Window." Science China-Materials, 2022, Öйú׿ԽÆÚ¿¯

[15] "Reversible Phosphorus-Based Five-Electron Transfer Reaction for Aluminium-Phosphorus Batteries." Energy Storage Materials , 2022, (IF=20.4)

[16] "Tailored Mos<Sub>2</Sub> Bilayer Grafted onto N/S-Doped Carbon for Ultra-Stable Potassium-Ion Capacitor." Chemical Engineering Journal , 2022, (IF=13.3)

[17] "Water-Soluble Salt Template-Assisted Anchor of Hollow Fes<Sub>2</Sub> Nanoparticle inside 3d Carbon Skeleton to Achieve Fast Potassium-Ion Storage." Advanced Energy Materials , 2021, (IF=27.8)

[18] "Liquid-State Templates for Constructing B, N, Co-Doping Porous Carbons with a Boosting of Potassium-Ion Storage Performance." Advanced Energy Materials , 2021, (IF=27.8)

[19] "Enhancing Hydrogen Oxidation Electrocatalysis of Nickel-Based Catalyst by Simultaneous Chemical Anchoring and Electronic Structure Regulation." Chemical Engineering Journal , 2021, (IF=13.3)

[20] "Amorphous Se Species Anchored into Enclosed Carbon Skeleton Bridged by Chemical Bonding toward Advanced K-Se Batteries." Journal of Energy Chemistry , 2021, Öйú׿ԽÆÚ¿¯ (IF=14.0)

[21] "Controlled Design of Well-Dispersed Ultrathin MoS2 Nanosheets inside Hollow Carbon Skeleton: Toward Fast Potassium Storage by Constructing Spacious "Houses" for K Ions." Advanced Functional Materials , 2020, (IF=18.5)

[22] "Rigid-Flexible Coupling Carbon Skeleton and Potassium-Carbonate-Dominated Solid Electrolyte Interface Achieving Superior Potassium-Ion Storage." ACS Nano , 2020, (IF=17.1)

[23] "Bioinspired Mineralization under Freezing Conditions: An Approach to Fabricate Porous Carbons with Complicated Architecture and Superior K+ Storage Performance." ACS Nano , 2019, (IF=17.1)

7.ÊÚȨ·¢Ã÷רÀû

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[2] Ò»²½·¨ÖƱ¸Ààʯīϩ̼ÄÉÃׯ¬ÖÊÁϵÄÒªÁì¼°ÆäÓÃ; £¬·¢Ã÷רÀû £¬¹ú¼Ò֪ʶ²úȨ¾Ö £¬  CN201710155086.9 £¬2020-09-29¡£

[3] Ò»ÖÖÆÕ³ʿÀ¶ÀàÕý¼«ÖÊÁϵÄÖÆ±¸ÒªÁì £¬·¢Ã÷רÀû £¬¹ú¼Ò֪ʶ²úȨ¾Ö £¬CN202211131455.8 £¬2023-06-23¡£

[4] Ò»ÖÖӲ̼ÖÊÁϼ°ÆäÖÆ±¸ÒªÁìºÍÔÚÄÆÀë×Óµç³ØÖеÄÓ¦Óà £¬·¢Ã÷רÀû £¬¹ú¼Ò֪ʶ²úȨ¾Ö £¬CN202210978278.0 £¬2023-07-21¡£

[5] Ò»ÖÖ̼°ü¸²îÑËáÄÆ¸´ºÏÖÊÁϼ°ÆäºÏ³ÉÒªÁìºÏ´¢ÄÆÓ¦Óà £¬·¢Ã÷רÀû £¬¹ú¼Ò֪ʶ²úȨ¾Ö £¬CN202210091598.4 £¬2024-02-06¡£

[6] Ò»ÖÖµ¥¾§¸ßÄøÖÊÁϼ°ÆäÖÆ±¸ÒªÁìºÍÓ¦Óà £¬·¢Ã÷רÀû £¬¹ú¼Ò֪ʶ²úȨ¾Ö £¬CN202211298607.3 £¬2024-02-20¡£

[7] Ò»ÖÖӲ̼¸´ºÏÖÊÁÏ¡¢ÖƱ¸ÒªÁì¼°Ó¦ÓúÍï®Àë×Óµç³Ø £¬·¢Ã÷רÀû £¬¹ú¼Ò֪ʶ²úȨ¾Ö £¬CN202211271897.2 £¬2024-04-30¡£

8.ÁªÏµ·½·¨

Email: yongpengcui@cup.edu.cn

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