陳雙強(qiáng) 教授

主要從事設(shè)計(jì)與制備功能化多孔碳材料、過(guò)渡金屬?gòu)?fù)合物材料,開(kāi)發(fā)多維度原位表征技術(shù)、理論計(jì)算、機(jī)器學(xué)習(xí)等基礎(chǔ)研究工作,推動(dòng)碳材料、過(guò)渡金屬?gòu)?fù)合材料在儲(chǔ)能電池與催化方面的產(chǎn)業(yè)化工作。先后在悉尼科技大學(xué)(博士生導(dǎo)師:汪國(guó)秀教授)、馬克斯普朗克固體所(博士后:所長(zhǎng)Prof. Joachim Maier和國(guó)家杰青余彥課題組)、上海大學(xué)、溫州大學(xué)、東華大學(xué)等科研院所進(jìn)行學(xué)習(xí)和工作。
主持國(guó)家自然科學(xué)基金-面上項(xiàng)目(3項(xiàng))、上海市教委、浙江省公益基金、溫州市科委項(xiàng)目和國(guó)家重點(diǎn)實(shí)驗(yàn)室開(kāi)放基金等多個(gè)項(xiàng)目;先后入選德國(guó)洪堡學(xué)者、上海市東方學(xué)者和浙江省甌越英才等人才計(jì)劃;連續(xù)5年入選全球前2%科學(xué)家榜單。
研究方向:
1.功能化多孔碳材料、過(guò)渡金屬?gòu)?fù)合材料的設(shè)計(jì)
2.多維度原位表征技術(shù)開(kāi)發(fā)與反應(yīng)機(jī)制研究
3.密度泛函、分子動(dòng)力學(xué)理論計(jì)算與機(jī)器學(xué)習(xí)研究
4.儲(chǔ)能電池(鋰/鈉電池)與電催化體系的產(chǎn)業(yè)化
榮譽(yù)及獲獎(jiǎng)情況:
1.Wiley旗下雜志《Battery Energy》優(yōu)秀青年編委
2.Rising Star of Science Award (Research.com)
3.中國(guó)大學(xué)生知行促進(jìn)計(jì)劃優(yōu)秀指導(dǎo)老師
4.Elsevier出版社《Joule》Rising Star Award
5.上海市特聘教授——東方學(xué)者
6.德國(guó)洪堡基金會(huì)——洪堡學(xué)者
7.上海大學(xué)教學(xué)成果獎(jiǎng)二等獎(jiǎng)
8.上海大學(xué)第一屆“卓越導(dǎo)學(xué)團(tuán)隊(duì)獎(jiǎng)”
9.上海大學(xué)黨史融合微課展評(píng)特等獎(jiǎng)
10.Elsevier出版社《J. Power Sources》雜志年度杰出貢獻(xiàn)獎(jiǎng)
近年來(lái)承擔(dān)的主要科研項(xiàng)目:
1.國(guó)家自然科學(xué)基金面上項(xiàng)目:寬溫域低成本磷酸錳鈉基正極材料設(shè)計(jì)與高效儲(chǔ)鈉機(jī)制研究,2025.01—2028.12,主持。
2.國(guó)家自然科學(xué)基金面上項(xiàng)目:可再生有機(jī)硫化物的鋰硫反應(yīng)機(jī)理分析與柔性器件構(gòu)筑, 2022.01—2025.12,主持。
3.國(guó)家自然科學(xué)基金面上項(xiàng)目:磷酸釩鋰基電極的力學(xué)結(jié)構(gòu)調(diào)控及低溫電化學(xué)性能的優(yōu)化, 2020.01—2023.12,主持。
4.浙江省基礎(chǔ)公益研究計(jì)劃探索項(xiàng)目:寬溫域特種電池的體系設(shè)計(jì)與原位機(jī)理分析, 2024.01—2026.12,主持。
5.浙江省溫州市基礎(chǔ)科研項(xiàng)目:低成本、高性能鐵基磷酸鹽鈉離子電池正極材料設(shè)計(jì)與機(jī)理分析,2024.01—2026.12,主持。
6.上海市高校特聘教授崗位計(jì)劃——“東方學(xué)者”,2017,主持。
7.德國(guó)洪堡基金——“洪堡學(xué)者”,2015-2017,主持。
近年來(lái)發(fā)表的代表性論著、專(zhuān)利:
論文
1. Lei Wang§, Jiaqing Wang§, Lu Yifei§, Suqiao Fang, Chao Yang, Xingqiao Wu, Yao Xiao*, Yong Wang, Shulei Chou*, Shuangqiang Chen*; A review of Ni-based layered oxide cathode materials for alkali ion batteries; Chemical Society Reviews, 2025, 54, 4419 – 4467.
2. Lei Wang§, Jiaqing Wang§, Henghui Chen, Hanghang Dong, Haichao Wang, Yong Wang, Yao Xiao *, Jing Wang*, Shuangqiang Chen*; Fast screening suitable doping transition metals to Na3V2(PO4)2F3 for sodium-ion batteries with high energy density in wide-temperature range. Advanced Materials, 2025, 202505093.
3. Xin-Bei Jia, Qian-Qian Peng, Yi-Feng Liu, Dian-Cheng Chen, Jingqiang Wang, Jia-Yang Li, Yan-Fang Zhu*, Neng-Hua Xu, Ling-Yi Kong, Han-Xiao Liu, Guang-Yu Zhang, Zhuang-Chun Jian, Chen Cheng, Hang-Hang Dong, Liang Zhang, Yang Sun, Shuang-Qiang Chen*, Xiao-Dong Guo*, Shixue Dou & Yao Xiao*, Nature Communications| 2025, 16:10477.
4. Haichao Wang, Xiao-Meng Lu, Yiwen Sun, Yi Xu, Weiwei Sun, Liping Lv, Shuangqiang Chen*, Yong Wang* Intramolecular Dual Donor-Acceptor Featured Covalent Organic Frameworks Enabled by Gating Effects for Ultra-Stable Na-Metal Batteries, Angewandte Chemie International Edition, 2025, 64, e202508503.
5. Qijie Yu, Jiulin Hu*, Yi Xu, Runyuan Cao, Shuangqiang Chen*, and Chilin Li* Mesoporous Enhanced Heterostructured Halide Solid Electrolytes with High Air Stability and High Abundance for Sustainable Sodium Metal Batteries; Angewandte Chemie International Edition 2025, e202425503.
6. Ruiwen Shao, Zhefei Sun, Lei Wang, Jianhai Pan, Luocai Yi, Yinggan Zhang, Jiajia Han, Zhenpeng Yao,* Jie Li, Zhenhai Wen, Shuangqiang Chen,* Shu-Lei Chou,* Dong-Liang Peng, and Qiaobao Zhang* Resolving the Origins of Superior Cycling Performance of Antimony Anode in Sodium-ion Batteries: A Comparison with Lithium-ion Batteries, Angewandte Chemie International Edition 2024, e202320183.
7. Xinran Qi, Hanghang Dong, Hao Yan, Baoxiu Hou, Haiyan Liu, Ningzhao Shang, Longgang Wang*, Jianjun Song*, Shuangqiang Chen*, Shulei Chou, Xiaoxian Zhao* Hollow Core-Shelled Na4Fe2.4Ni0.6(PO4)2P2O7 with Tiny-Void Space Capable Fast-Charge and Low-Temperature Sodium Storage, Angewandte Chemie International Edition 2024, e202410590.
8. Junan Feng?, Chaoyue Zhang?, Wendong Liu, Shunxian Yu, Lei Wang, Tianyi Wang, Chuan Shi, Xiaoxian Zhao*, Shuangqiang Chen*, Shulei Chou*, Jianjun Song* Enabling Efficient Anchoring-Conversion Interface by Fabricating Double-Layer Functionalized Separator for Suppressing Shuttle Effect, Angewandte Chemie International Edition 2024, e 202407042.
9. Chen, Shuangqiang; Shen, Laifa; van Aken, Peter A.; Maier, Joachim; Yu,Yan*, Dual-Functionalized Double Carbon Shells Coated Silicon Nanoparticles for High Performance Lithium-Ion Batteries, Advanced Materials, 2017, 29(21): 1605650.(高被引論文)
10. Chen Shuangqiang, Chao Wu, Laifa Shen, Changbao Zhu, Yuanye Huang, Kai Xi, Jochiam Maier, and Yan Yu* Challenge and Perspective of NASICON-Type Electrode Materials for Advanced Sodium-Ion Batteries. Advanced Materials, 2017, 29 (48), 201700431.(高被引論文)
11. Jian Zhuang-Chun, Shi Wenjun, Liu Yifeng, Li Xueyan, Li Jiayang, Zhu Yan-Fang, Zhu Xu, Li Yongchun, Tan, Peng, Wang Peng-Fei, Chen Shuangqiang,* Zhang Shilin, Mao Jianfeng, Zhou Guangmin*, Guo Xiaodong,* Wang Jiazhao, Dou Shi-Xue, Xiao Yao* Accelerating lattice oxygen kinetics of layered oxide cathodes via active facet modulation and robust mechanochemical interface construction for high-energy-density sodium-ion batteries. Energy & Environmental Science, 2025, 18(16): 7995-8008.
12. Lei Wang, Jiaqing Wang, Leilei Wang, Hanghang Dong, Chao Yang,* Hao Yan, Yao Xiao, Yong Wang, Shulei Chou, and Shuangqiang Chen*, Synergistic Strain Suppressing and Interface Engineering in Na4MnV(PO4)3/C for Wide-Temperature and Long-Calendar-Life Sodium-Ion Storage, ACS Nano 2024, 18, 10863?10873.
13. Ruining Fu; Jianhai Pan; Mingyuan Wang; Huihua Min; Hanghang Dong; Ran Cai; Zhefei Sun; Yuwei Xiong; Fuhan Cui; Shuang-Ying Lei; Shuangqiang Chen*; Jing Chen; Litao Sun; Qiaobao Zhang*; Feng Xu*; In Situ Atomic-Scale Deciphering of Multiple Dynamic Phase Transformations and Reversible Sodium Storage in Ternary Metal Sulfide Anode, ACS Nano, 2023, 17: 12483-12498.
14. Danying Xu; Minxia Liang; Shuo Qi; Weiwei Sun; Li-Ping Lv; Fei-Hu Du; Baofeng Wang; Shuangqiang Chen*; Yong Wang; Yan Yu*; The Progress and Prospect of Tunable Organic Molecules for Organic Lithium-Ion Batteries., ACS Nano, 2021, 15(1): 47-80.(高被引論文)
15. Feixiang Wu*; Vesna Srot; Shuangqiang Chen*; Mingyu Zhang; Peter A. van Aken; Yong Wang; Joachim Maier; Yan Yu*; Metal–Organic Framework-Derived Nanoconfinements of CoF2 and Mixed-Conducting Wiring for High-Performance Metal Fluoride-Lithium Battery, ACS Nano, 2020, 15(1): 1509-1518.
16. Shuangqiang Chen, Feixiang Wu, Laifa Shen, Yuanye Huang, Shyam Kanta Sinha, Vesna Srot, Peter A van Aken, Joachim Maier, Yan Yu* Cross-Linking Hollow Carbon Sheet Encapsulated CuP2 Nanocomposites for High Energy Density Sodium-Ion Batteries, ACS Nano, 2018, 12, 7018-7027.
17. Lei Wang, Leilei Wang, Haichao Wang, Hanghang Dong, Weiwei Sun, Li-Ping Lv, Chao Yang, Yao Xiao, Feixiang Wu, Yong Wang, Shulei Chou, Bing Sun,* Guoxiu Wang, and Shuangqiang Chen* Progress and Perspective of High-Entropy Strategy Applied in Layered Transition Metal Oxide Cathode Materials for High-Energy and Long Cycle Life Sodium-Ion Batteries, Advanced Functional Materials, 2024, 35(11), 2417258.
18. Xiang Cui; Jiaxin Chen; Zhefei Sun; Lei Wang; Qianqian Peng; Bensheng Xiao; Ligong Zhao; He Zheng; Yong Wang; Jianbo Wang; Xianfei Chen*; Qiaobao Zhang*; Shuangqiang Chen*; A General Route for Encapsulating Monodispersed Transition Metal Phosphides into Carbon Multi‐Chambers toward High‐Efficient Lithium‐Ion Storage with Underlying Mechanism Exploration, Advanced Functional Materials, 2023, 33: 2212100.(高被引論文)
19. Chengzhi Ke; Ruiwen Shao; Yinggan Zhang; Zhefei Sun; Shuo Qi; Hehe Zhang; Miao Li; Zhilin Chen; Yangsu Wang; Baisheng Sa; Haichen Lin; Haodong Liu; Ming‐Sheng Wang; Shuangqiang Chen*; Qiaobao Zhang*; Synergistic Engineering of Heterointerface and Architecture in New‐Type ZnS/Sn Heterostructures In Situ Encapsulated in Nitrogen‐Doped Carbon Toward High‐Efficient Lithium‐Ion Storage, Advanced Functional Materials, 2022, 5: 2205635.(高被引論文)
20. Chen Shuangqiang, Huang Xiaodan, Liu Hao, Sun Bing, Yeoh Waikong, Li Kefei, Zhang Jinqiang, Wang Guoxiu*: 3D Hyperbranched Hollow Carbon Nanorod Architectures for High‐Performance Lithium‐Sulfur Batteries. Advanced Energy Materials, 2014, 4 (8), 1301761.(高被引論文)
21. Hui Zhang, Lei Wang, Linlin Ma, Yahui Liu, Baoxiu Hou, Ningzhao Shang, Shuaihua Zhang, Jianjun Song,* Shuangqiang Chen,* and Xiaoxian Zhao*; Surface Crystal Modi?cation of Na3V2(PO4)3 to Cast Intermediate Na2V2(PO4)3 Phase toward High-Rate Sodium Storage; Advanced Science, 2024, 11(3): 2306168.
22. Yongjian Zheng; Wujie Qiu; Lei Wang; Jianjun Liu; Shuangqiang Chen*; Chi-Lin Li*; Triple Conductive Wiring by Electron Doping, Chelation Coating and Electrochemical Conversion in Fluffy Nb2O5 Anodes for Fast‐Charging Li‐Ion Batteries, Advanced Science, 2022, 9(25): 2202201.
23. Tianyi Wang#, Shuangqiang Chen#, Huan Pang, Huaiguo Xue, Yan Yu* MoS2-Based Nanocomposites for Electrochemical Energy Storage. Advanced Science, 2017, 4, 1600289.(高被引論文,#為共同一作)
24. Hanghang Dong, Zuo Liu, Haichao Wang, Jiarun Geng, Mengqing Ding, Shuang Yan, Chenguang Youb, Hao Yan, Mingzhe Chen*, Shuangqiang Chen*, The design principles and cost-effective approaches for iron/manganese polyanionic cathodes of sodium ion batteries, Energy Storage Materials, 2026: 84, 104889.
25. Qianqian Peng, Hanghang Dong, Hao Yan, Yao Xiao, Yong Wang, Shulei Chou, Shuangqiang Chen,* A needle-like covalent organic framework with highly accessible phenazine and π-conjugated structure for potassium storage and its reaction mechanism; Energy Storage Materials, 2024, 73, 103849.
26. Xinran Qi, Qingyu Dong, Hanghang Dong, Baoxiu Hou, Haiyan Liu, Ningzhao Shang, Shuaihua Zhang, Longgang Wang,* Hui Shao,* , Yanbin Shen, Shuangqiang Chen,* Xiaoxian Zhao,* Copper-induced lattice distortion in Na4Fe3(PO4)2(P2O7) cathode enabling high power density Na-ion batteries with good cycling stability. Energy Storage Materials 2024, 73, 103861.
27. Qun Huang, Meiyu Wang, Li Zhang, Shuo Qi, Yiming Feng, Pingge He, Xiaobo Ji, Peng Wang, Liangjun Zhou*, Shuangqiang Chen*, Weifeng Wei*, Shear-resistant interface of layered oxide cathodes for sodium ion batteries, Energy Storage Materials, 2022, 45, 389-398.
28. Shuangqiang Chen, Zhimin Ao, Bing Sun, Xiuqiang Xie, Guoxiu Wang* Porous carbon nanocages encapsulated with tin nanoparticles for high performance sodium-ion batteries, Energy Storage Materials, 2016, 5, 180-190.
29. Yanshuai Yuan, Lei Wang, Qiangchao Sun, Wei Nie, Linhui Chang, Shuangqiang Chen*, Hongwei Cheng*, Architecting versatile NiFe2O4 coating for enhancing structural stability and rate capability of layered Ni-rich cathodes, Chemical Engineering Journal, 2023, 470, 144210.
30. Qun Huang; Yiming Feng; Lei Wang; Shuo Qi; Pingge He; Xiaobo Ji; Chaoping Liang; Shuangqiang Chen*; Liangjun Zhou; Weifeng Wei*; Structure modulation strategy for suppressing high voltage P3-O1 phase transition of O3-NaMn0.5Ni0.5O2 layered cathode, Chemical Engineering Journal, 2022, 431: 133454.
31. Xinran Qi, Xin Zhou, Xiaocui Chen, Baoxiu Hou, Haiyan, Liu, Ningzhao Shang, Longgang Wang*, Jianjun Song, Shuangqiang Chen*, XiaoxianZhao* Regulation on Morphology and Electronic Structure Design of Vanadium-based Sodium Phosphate Cathodes for High-performance Sodium-ion Batteries, Carbon Energy, 2025, 7: e70030.
32. Lei Wang, Suqiao Fang, Haichao Wang, Qianqian Peng, Yifeng Liu, Hanghang Dong*, Hao Yan, Yong Wang, Shulei Chou, Bing Sun, Yao Xiao*, Shuangqiang Chen* Flexible self-supporting organic cathode with interface engineering for high-performance and wide-temperature sodium‐ion batteries, Carbon Energy, 2024, e632, 1-12.
33. Lei Zhai, Hanghang Dong, Haichao Wang, Yijie Duan, Zuo Liu, Shuang Yan, Chenguang You, Hao Yan, Xin Tan, and Shuangqiang Chen*, Synergistic strategy of interfacial ion channels and a cross-linked network in a composite electrolyte for dendrite-free sodium-metal batteries, Chemical Science, 2026, DOI: 10.1039/d5sc09295g.
34. Chenguang You, Chenzhuang Dong, Jiachen Lu, Siyuan Xie, Yijie Duan, Lili Duan, Hao Yan, Wei Luo*, Shuangqiang Chen*, A multi-scale temporal fusion network for accurate and uncertainty aware battery remaining useful life prediction, Journal of Energy Chemistry 2026, 116: 454-469.
35. Junan Feng, Chuan Shi, Hanghang Dong, Chaoyue Zhang*, Wendong Liu, Yu Liu, Tianyi Wang, Xiaoxian Zhao, Shuangqiang Chen*, Jianjun Song* Design of ZnSe-CoSe heterostructure decorated in hollow N-doped carbon nanocage with generous adsorption and catalysis sites for the reversibly fast kinetics of polysul?de conversion, Journal of Energy Chemistry 2023, 86, 135-145. (高被引論文)
36. Chuan Guo#, Jianwei Yang#, Zhiyuan Cui, Shuo Qi, Qianqian Peng, Weiwei Sun, Li-Ping Lv, Yi Xu, Yong Wang*, Shuangqiang Chen*, In-situ structural evolution analysis of Zr-doped Na3V2(PO4)2F3 coated by N-doped carbon layer as high-performance cathode for sodium-ion batteries, Journal of Energy Chemistry, 2021, 65: 514-523.
37. Qian-Qian Peng, Yi-Ting Wang, Shuo Qi, Yao Xiao, Yong Wang, Shuangqiang Chen* The homogenous growth of Co-based coordination compound on graphene nanosheet for high-performance K-organic battery and its reaction mechanism, Rare Metal, 2024, 43, 1622-1634.
38. Kai Wang, Haotian Qin, Jun Li*, Qiang Cheng, Yanfang Zhu, Haiyan Hu, Jian Peng, Haiyan Hu, Jian Peng, Shuangqiang Chen*, Guodong Wang, Shulei Chou, Shixue Dou, Yao Xiao*, Metallic AgInS2 nanocrystals with sulfur vacancies boost atmospheric CO2 photoreduction under near-infrared light illumination, Applied Catalysis B: Environmental, 2023, 332, 122763.
39. Chen, Shuangqiang; Sun, Bing; Xie, Xiuqiang; Mondal, Anjon Kumar; Huang, Xiaodan; Wang, Guoxiu* Multi-chambered micro/mesoporous carbonnanocubes as new polysulfides reserviors for lithium-sulfur batteries with long cycle life, Nano Energy, 2015, 16: 268-280.
40. Chen Shuangqiang, Bao Peite; Wang Guoxiu* Synthesis of Fe2O3-CNT–graphene hybrid materials with an open three-dimensional nanostructure for high capacity lithium storage Nano Energy 2013, 2, 425-434.
41. Hanghang Dong, Ting Wang, Limin Zhou*, Kai Zhang*, Shuangqiang Chen*, Shi-Xue Dou, Hua-Kun Liu, Mingzhe Chen*, State-of-the-Art Electrolytes and Interfaces Engineering for High-Energy-Density All-solid-State Sodium Batteries, Small 2025: e07296.
42. Yongjian Zheng, Keyi Chen, Lei Wang, Shuangqiang Chen,* and Chilin Li*, Pillaring Electronic Nano-Wires to Slice T-Nb2O5 Laminated Particles for Durable Lithium-Ion Batteries, Small 2024, 2308727.
43. Hanghang Dong, Ying Ji, Lei Wang, Haichao Wang, Chao Yang, Yao Xiao, Mingzhe Chen*, Yong Wang, Shulei Chou, Renheng Wang,* Shuangqiang Chen* Bimetallic Coupling Strategy Modulating Electronic Construction to Accelerate Sulfur Redox Reaction Kinetics for High-Energy Flexible Li-S Batteries, Small, 2024, 2406565.
44. Hanghang Dong, Shuo Qi, Lei Wang, Xianfei Chen,* Yao Xiao, Yong Wang, Bing Sun,* Guoxiu Wang, Shuangqiang Chen*, Conductive polymer coated layered double hydroxide as a novel sulfur reservoir for flexible lithium-sulfur batteries, Small, 2023, 19: 2300843.
45. Hong-Wei Li, Jia-Yang Li, Hang-Hang Dong, Hai-Yan Hu, Yi-Feng Liu, Yu Su, Ling-Yi Kong, Han-Xiao Liu, Jia-Zhao Wang, Shuangqiang Chen*, Zhi-Jia Zhang*, Yao Xiao*, Shu-Lei Chou*, and Yong Jiang*. An Intrinsic Stable Layered Oxide Cathode for Practical Sodium-Ion Battery: Solid Solution Reaction, Near-Zero-Strain and Marvelous Water Stability. Small, 2023, 2306690.
46. Minxia Liang, Longgang Li, Xiang Cui, Shuo Qi, Lei Wang, Hanghang Dong, Xianfei Chen,* Yong Wang, Shuangqiang Chen,* and Guoxiu Wang*,Ru- and Cl- Co-Doped Li3V2(PO4)3 with Enhanced Performance for Lithium-Ion Batteries in a Wide Temperature Range, Small, 2022, 18, 2202151.
47. Jinqiao Hu, Wenxi Zhao, Yuqiu Wang, Shikang Jiang, Binkai Yu, Shi-Xue Dou, Hua-Kun Liu, Shuangqiang Chen*, Kai Zhang, Limin Zhou, Mingzhe Chen*; The Role of Fluorine in Polyanionic Cathode Materials for Sodium-Ion Batteries; Small Methods, 2025, 9, 2402099.
48. Hanghang Dong, Danying Xu, Ying Ji, Chao Yang, Yao Xiao, Mingzhe Chen,* Yong Wang, Shulei Chou, Renheng Wang,* Shuangqiang Chen,* An MXene-supported NH2CNT and BiOCl composite as a sulfur reservoir for Li–S batteries with high energy density, Chemical Communication, 2024,60, 11080-11083.
49. Yuqiu Wang, Hanghang Dong, Shikang Jiang, Binkai Yu, Ting Wang, Hui Xia, Jinqiao Hu, Limin Zhou, Yao Xiao, Jin Xiao,* Weibo Hua,* Yi Wang,* Shuangqiang Chen,* and Mingzhe Chen* ACS Appl. Mater. Interfaces 2025, 17, 42990?43001.
50. Minxia Liang, Yiting Wang, Hanghang Dong, Lei Wang, Qianqian Peng, Chao Yang, Yao Xiao, Yong Wang, Shulei Chou, Bing Sun*, Shuangqiang Chen* Surface engineering of Li3V2(PO4)3 -based cathode materials with enhanced performance for lithium-ion batteries working in a wide temperature range, Microstructures 2024;4:2024034.
51. Yifei Lu, Lei Wang, Zhenzhu Lou, Leilei Wang, Yi Zhao, Weiwei Sun, Liping Lv, Yong Wang and Shuangqiang Chen* A Nickel-Based Coordination Compound with Tunable Morphology for High-Performance Anode and the Lithium Storage Mechanism, Batteries 2023, 9(6), 313.
52. Xiang Cui, Minxia Liang, Lei Wang, Longgang Li, Qianqian Peng, Hanghang Dong, Shuo Qi, Weiwei Sun, Li-ping Lv, Xianfei Chen,* Yong Wang, Shuangqiang Chen,* Shulei Chou* High structural stability and reaction mechanism of porous carbon nanobox encapsulated monodisperse CoP nanoparticles for high-performance Li-ion battery, Batteries & Supercaps, 2022, 6, 2200271.
53. Yifei Lu, Libo Yuan*, Qianqian Peng, Shuo Qi, Lei Wang, Jiaxin Chen, Yiting Wang, Li-Ping Lv, Weiwei Sun, Yong Wang, Shuangqiang Chen* A kind of Co-based coordination compounds with tunable morphologies and its Li-storage mechanism, Electrochimica Acta, 2022, 422, 140565.
54. Qianqian Peng, Yifei Lu, Shuo Qi, Minxia Liang, Danying Xu, Weiwei Sun, Li-Ping Lv, Yiying Wei, Shuangqiang Chen*, Yong Wang, Pomegranate-Inspired Nitrogen-Doped Carbon-Coated Bimetallic Sulfides as a High-Performance Anode of Sodium-Ion Batteries and Their Structural Evolution Analysis, ACS Applied Energy Materials, 2022, 5, 3199-3207.
55. Wang Yuqiu, Dong Hanghang, Jiang Shikang, Yu Binkai, Wang Ting, Xia Hui, Hu Jinqiao, Zhou Limin, Xiao Yao, Xiao Jin*, Hua Weibo*, Wang Yi*, Chen Shuangqiang,* Chen Mingzhe*. Unlocking the Excitation Mechanism of Unpaired Electrons of High-Valent Vanadium Ions in a NASICON Cathode for Sodium-Ion Batteries. ACS Appl. Mater. Interfaces 2025, 17, 30, 42990–43001.
56. Chen Shuangqiang, Zhao Y., Ao Z., Sun B., Huang X., Xie X., Wang Guoxiu* (2015): Microwave-assisted synthesis of mesoporous Co3O4 nanoflakes for applications in lithium ion batteries and oxygen evolution reactions ACS Applied Materials & Interfaces 2015, 7 (5), 3306–3313.
57. Zhou, Peng; Qi, Shuo; Zhang, Mingyu; Wang, Liping; Huang, Qizhong; Su, Zhean; Guo, Zhenghao; Hu, Yueli; Wang, Yong; Chen, Shuangqiang* N-doped carbon nanofibers encapsulated Cu2-xSe with the improved lithium storage performance and its structural evolution analysis Electrochimica Acta, 2021, 367, 137449.
58. Qianqian Peng, Shuo Qi, Li-Ping Lv, Weiwei Sun, Yong Wang, Shuangqiang Chen* A cobalt-based coordination compound with high capacity as the anode of lithium-ion battery and its stepwise reaction mechanism, Journal of Alloys and Compounds, 2022, 927, 167064.
59. Su, Yun; Chen, Shuangqiang*; Yang, Qinsi; Wang, Yong*; Self-assembled 3D Fe2(MoO4)3 microspheres with amorphous shell as anode of lithium-ion batteries with superior electrochemical performance. Chemical Engineering Science 2020, 217, 115517.
60. Chen Shuangqiang, Huang X., Sun B., Zhang J., Liu H., Wang Guoxiu* (2014): Multi-shelled hollow carbon nanospheres for lithium-sulfur batteries with superior performances Journal of Materials Chemistry A 2, 16199-16207.
61. Chen Shuangqiang, Bao P., Huang X., Sun B., Wang Guoxiu* (2014): Hierarchical 3D mesoporous silicon@graphene nanoarchitectures for lithium ion batteries with superior performance Nano Research 2014, 7, 85-94.
62. Chen Shuangqiang, Bao P., Xiao L., Wang Guoxiu* Large-scale and low-cost synthesis of graphene as high capacity anode materials for lithium-ion batteries Carbon 2013, 64, 158-169.
63. Chen, Shuangqiang, Chen, Peng, Wang, Yong*; Carbon nanotubes grown in situ on graphene nanosheets as superior anodes for Li-ion batteries; Nanoscale 2013, 3(10), 4323-4329.
64. Chen Shuangqiang, Yeoh W., Liu Q., Wang Guoxiu* Chemical-free synthesis of graphene–carbon nanotube hybrid materials for reversible lithium storage in lithium-ion batteries Carbon 2012, 50, 4557-4565.
65. Chen Shuangqiang, Wang Y., Ahn H., Wang Guoxiu*: Microwave hydrothermal synthesis of high performance tin-graphene nanocomposites for lithium ion batteries Journal of Power Sources 2012, 216, 22-27.(高被引論文)
66. Chen Shuangqiang, Chen P., Wu M., Pan D., Wang Yong*: Graphene supported Sn-Sb@carbon core-shell particles as a superior anode for lithium ion batteries Electrochemistry Communications 2010, 12, 1302-1306.
67. Chen Shuangqiang, Wang Yong* (2010): Microwave-assisted synthesis of a Co3O4-graphene sheet-on-sheet nanocomposite as a superior anode material for Li-ion batteries Journal of Materials Chemistry 2010, 20, 9735-9739. (高被引論文)
著作
《堿金屬電池關(guān)鍵材料基礎(chǔ)與應(yīng)用》,主編:王勇;副主編:陳雙強(qiáng)、劉浩。2021年10月,化學(xué)工業(yè)出版社。(ISBN978-7-122-39477-4)
專(zhuān)利
1. 陳雙強(qiáng),侴術(shù)雷,董行行,許丹穎,王海超;柔性氨基化碳納米管與 BiOCl 共修飾 MXene 載硫正極的制備方法;ZL202411845709.1;發(fā)明專(zhuān)利
2. 陳雙強(qiáng)、梁敏霞、王嘉卿;一種寬溫域高容量磷酸釩鋰摻雜材料的制備;ZL202110526743.2;已授權(quán);發(fā)明專(zhuān)利
3. 王勇; 呂麗萍; 孫煒偉; 陳雙強(qiáng); 尹曉杰; 雙金屬配位聚合物電極材料及其制備方法; ZL202010528033.9. 已授權(quán);發(fā)明專(zhuān)利
4. 王勇、陳雙強(qiáng)、陳鵬、闞進(jìn)、耿華;一種石墨烯負(fù)載碳包覆錫銻的鋰電池負(fù)極材料的制備方法;ZL2021110280736.5;已授權(quán);發(fā)明專(zhuān)利
5. 王勇; 唐軍軍; 焦正; 郭曉亞; 何雅琴; 陳雙強(qiáng);一種有序的銻基氧化物自組裝納米花團(tuán)簇和納米線(xiàn)材料的制備方法, ZL200910048320.3;已授權(quán);發(fā)明專(zhuān)利
主要學(xué)術(shù)兼職:
社會(huì)職務(wù):中國(guó)化學(xué)會(huì)會(huì)員;上海市化學(xué)化工學(xué)會(huì)理事。
評(píng)審專(zhuān)家:國(guó)家自然科學(xué)基金評(píng)審專(zhuān)家;教育部學(xué)術(shù)學(xué)位論文評(píng)審專(zhuān)家;上海市科學(xué)委員會(huì)、上海市教育委員會(huì)評(píng)審專(zhuān)家;浙江省自然科學(xué)基金評(píng)審專(zhuān)家;江蘇省科技廳項(xiàng)目評(píng)審專(zhuān)家;學(xué)術(shù)橋?qū)<規(guī)斐蓡T。
學(xué)術(shù)兼職與審稿:擔(dān)任多個(gè)知名雜志的青年編委,如:《Infomat》、《Nano-Micro Letters》、《Batter & Energy》、《InfoScience》、《Chinese Chemical Letters》;擔(dān)任多種知名學(xué)術(shù)期刊的審稿人,包括:Advanced Materials, Advanced Functional Materials, ACS Nano, Materials Today, Infomat, Nano-Micro Letters, Chemical Engineering Journals, Journal of Energy Chemistry等。
國(guó)際交流與合作:
澳大利亞悉尼科技大學(xué)、澳洲雙院院士汪國(guó)秀教授課題組、德國(guó)馬克斯普朗克Joachim Maier教授課題組。
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