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Review of design considerations and technological challenges for successful development and deployment of plug-in hybrid electric vehicles. (2010). Rudramoorthy, R. ; Amjad, Shaik ; Neelakrishnan, S..
In: Renewable and Sustainable Energy Reviews.
RePEc:eee:rensus:v:14:y:2010:i:3:p:1104-1110.

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  2. Cost, range anxiety and future electricity supply: A review of how todays technology trends may influence the future uptake of BEVs. (2023). Allwood, Julian M ; Dunant, Cyrille F ; Cleaver, Christopher J ; Zhou, Wenbin ; Lin, Jianguo.
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  3. Meta-heuristics optimization in electric vehicles -an extensive review. (2022). Lakshmi, Komanapalli Venkata ; Vamsi, Aala Kalananda.
    In: Renewable and Sustainable Energy Reviews.
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  4. Supercapacitor management system: A comprehensive review of modeling, estimation, balancing, and protection techniques. (2022). Schaltz, E ; Farjah, E ; Karimi, S ; Naseri, F.
    In: Renewable and Sustainable Energy Reviews.
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  5. Generalization ability of hybrid electric vehicle energy management strategy based on reinforcement learning method. (2022). Song, Shixin ; Xiao, Feng ; Qi, Chunyang.
    In: Energy.
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  6. Real driving energy consumption and CO2 & pollutant emission characteristics of a parallel plug-in hybrid electric vehicle under different propulsion modes. (2022). Yin, Hang ; Tan, Jianwei ; Hao, Lijun ; Wang, Xin ; Su, Sheng ; Yang, Zhengjun ; Luo, Jiaxin ; Zhu, Qinggong ; Wen, YI ; Ge, Yunshan.
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  7. Self-learning energy management strategy for hybrid electric vehicle via curiosity-inspired asynchronous deep reinforcement learning. (2022). Zhao, Wanzhong ; Li, Chaoxiong ; Xu, DA ; Xue, Yuan ; Zhou, Jianhao.
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  11. Green vehicle routing problem: A state-of-the-art review. (2021). Mohammad, S ; Asghari, Mohammad.
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  12. Researching on the Sustainability of Transportation Industry Based on a Coupled Emergy and System Dynamics Model: A Case Study of Qinghai. (2021). Lu, Jianchang ; Fan, Weiguo ; Wu, Haizhen.
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  13. Overview of energy harvesting and emission reduction technologies in hybrid electric vehicles. (2021). Liu, Chunhua ; Bai, Shengxi.
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  14. The key issues of electric vehicle charging via hybrid power sources: Techno-economic viability, analysis, and recommendations. (2021). Becherif, Mohamed ; Eltoumi, Fouad M ; Ramadan, Haitham S ; Djerdir, Abdesslem.
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  15. Green vehicle routing problem: A state-of-the-art review. (2021). Mohammad, S ; Asghari, Mohammad.
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  16. Effect analysis on heat dissipation performance enhancement of a lithium-ion-battery pack with heat pipe for central and southern regions in China. (2021). Deng, Yuanwang ; Zhu, Hao ; Chen, Jingwei ; Wei, Kexiang ; Zuo, Hongyan ; Zhang, Bin ; Li, Wenjie ; Yi, Feng.
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  17. Technical and Commercial Challenges of Proton-Exchange Membrane (PEM) Fuel Cells. (2020). Sodre, Jose Ricardo ; Omran, Abdelnasir ; Alaswad, Abed ; Olabi, Abdul Ghani ; Baroutaji, Ahmad ; Dassisti, Michele ; Pignatelli, Gianmichelle ; Wilberforce, Tabbi.
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  18. A comprehensive overview of the dc-dc converter-based battery charge balancing methods in electric vehicles. (2020). Alkaya, Alkan ; Teke, Ahmet ; Turksoy, Arzu.
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  19. Heat dissipation investigation of the power lithium-ion battery module based on orthogonal experiment design and fuzzy grey relation analysis. (2020). Zhu, Hao ; Chen, Jingwei ; Wei, Kexiang ; Huang, Zhonghua ; Zhang, Bin ; Jin, YU ; Zeng, Yan ; Deng, Yuanwang.
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  20. Rule-interposing deep reinforcement learning based energy management strategy for power-split hybrid electric vehicle. (2020). Zhang, Hailong ; Tan, Huachun ; Wu, Yuankai ; Peng, Jiankun ; Lian, Renzong.
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  21. A novel paradigm for a sustainable mobility based on electric vehicles, photovoltaic panels and electric energy storage systems: Case studies for Naples and Salerno (Italy). (2019). Cappiello, Francesco Liberato ; Calise, Francesco ; Vicidomini, Maria ; Daccadia, Massimo Dentice ; Carteni, Armando.
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  22. Optimization of compound power split configurations in PHEV bus for fuel consumption and battery degradation decreasing. (2019). Cai, Yuanchun ; Xue, Dianlun ; Yang, Fuyuan ; Zhang, Feitie.
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  23. Integrated Sizing and Energy Management for Four-Wheel-Independently-Actuated Electric Vehicles Considering Realistic Constructed Driving Cycles. (2018). Zhang, Lei ; Qu, Changhui ; Wang, Zhenpo ; Yu, Wen.
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  24. Towards Optimal Power Management of Hybrid Electric Vehicles in Real-Time: A Review on Methods, Challenges, and State-Of-The-Art Solutions. (2018). Soffker, Dirk ; Ali, Ahmed M.
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  25. Urban and Extra-Urban Hybrid Vehicles: A Technological Review. (2018). Capata, Roberto.
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  26. The solutions to electric vehicle air conditioning systems: A review. (2018). Zhang, Zhenying ; Wang, Xingguo ; Chen, Yanhua ; Chang, LI ; Feng, XU.
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  27. Integration of electric vehicles and management in the internet of energy. (2018). Mahmud, Khizir ; Hossain, M J ; Morsalin, Sayidul ; Town, Graham E.
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  28. Battery degradation minimization oriented energy management strategy for plug-in hybrid electric bus with multi-energy storage system. (2018). Du, Jiuyu ; Wu, Xiaogang ; Ouyang, Minggao ; Wang, Hewu ; Song, Ziyou ; Zhang, Xiaobin.
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  29. Insights into the characteristics of technologies and industrialization for plug-in electric cars in China. (2018). Du, Jiuyu ; Ouyang, Minggao ; Song, Ziyou ; Wu, Xiaogang ; Li, Jianqiu ; Meng, Xiangfeng .
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  30. Optimal energy management strategy for a plug-in hybrid electric commercial vehicle based on velocity prediction. (2018). Shen, Peihong ; Guo, Qiuyi ; Li, Jingwei ; Zhan, Xiaowen ; Zhao, Zhiguo.
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  31. Configuration optimization for improving fuel efficiency of power split hybrid powertrains with a single planetary gear. (2018). Pei, Huanxin ; Cao, Dongpu ; Hou, Cong ; Tang, Xiaolin ; Yang, Yalian ; Hu, Xiaosong.
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  32. A review of Battery Electric Vehicle technology and readiness levels. (2017). Andwari, Amin Mahmoudzadeh ; Esfahanian, Vahid ; Martinez-Botas, Ricardo ; Rajoo, Srithar ; Pesiridis, Apostolos .
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  33. Electric vehicles in Spain: An overview of charging systems. (2017). Martinez-Lao, Juan ; Manzano-Agugliaro, Francisco ; Montoya, Maria G.
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  34. Fuel cell hybrid electric vehicles: A review on power conditioning units and topologies. (2017). Das, Himadry Shekhar ; Tan, Chee Wei.
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  35. Modelling of electric and parallel-hybrid electric vehicle using Matlab/Simulink environment and planning of charging stations through a geographic information system and genetic algorithms. (2017). Alegre, Susana ; Carpio, Jose ; Miguez, Juan V.
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  36. Management of hybrid powertrain dynamics and energy consumption for 2WD, 4WD, and HMMWV vehicles. (2017). Raslaviius, Laurencas ; Makaras, Rolandas ; Kerys, Artras .
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  37. Design and development of an hybrid light commercial vehicle. (2017). Millo, F ; Pautasso, E ; Servetto, E ; Cubito, C ; Rolando, L.
    In: Energy.
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  38. A critical review of thermal management models and solutions of lithium-ion batteries for the development of pure electric vehicles. (2016). Wang, Qian ; Yan, Yuying ; Li, BO ; Jiang, Bin.
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  39. Contribution of Plug-in Hybrid Electric Vehicles in power system uncertainty management. (2016). Aghaei, Jamshid ; Rahimi, Ehsan ; Rabiee, Abdorreza ; Nezhad, Ali Esmaeel.
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  40. Rare-earth-free propulsion motors for electric vehicles: A technology review. (2016). Garcia, Antoni ; Lopez-Torres, Carlos ; Romeral, Luis ; Riba, Jordi-Roger.
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  41. A review on hybrid electric vehicles architecture and energy management strategies. (2016). , ; Rahmat, M F ; Danapalasingam, K A.
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  42. Italian youngsters perceptions of alternative fuel vehicles: A fuzzy-set approach. (2016). Bollino, Carlo Andrea ; Bigerna, Simona ; Micheli, Silvia.
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  43. Implementation and evaluation of change-over speed in plug-in hybrid electric two wheeler. (2016). Sadagopan, P ; Neelakrishnan, S ; Amjad, Shaik ; Rudramoorthy, R.
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  44. Probabilistic Agent-Based Model of Electric Vehicle Charging Demand to Analyse the Impact on Distribution Networks. (2015). Olivella-Rosell, Pol ; Bergas-Jane, Joan ; Sumper, Andreas ; Villafafila-Robles, Roberto.
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  45. Limitations/capabilities of electric machine technologies and modeling approaches for electric motor design and analysis in plug-in electric vehicle applications. (2015). Yilmaz, Murat .
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  46. Towards a sustainable strategy for road transportation in Australia: The potential contribution of hydrogen. (2015). Maniatopoulos, Paul ; Shabani, Bahman ; Andrews, John.
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  49. ANFIS (adaptive neuro-fuzzy inference system) based online SOC (State of Charge) correction considering cell divergence for the EV (electric vehicle) traction batteries. (2015). Dai, Haifeng ; Sun, Zechang ; Wei, Xuezhe ; Guo, Pingjing ; Wang, Jiayuan.
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  50. Experimental study of a DC charging station for full electric and plug in hybrid vehicles. (2015). Capasso, Clemente ; Veneri, Ottorino.
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  51. Plug-in electric vehicles in electric distribution networks: A review of smart charging approaches. (2014). Asensio, F. J. ; Aperribay, V. ; San Martin, J. I. ; Garcia-Villalobos, J. ; Zamora, I..
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  52. Electric propulsion system for electric vehicular technology: A review. (2014). Kumar, Lalit ; Jain, Shailendra .
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  23. Sioshansi, R. ; Denholm, P. Emissions impact and benefits of plug-in hybrid electric vehicles and vehicle to grid services. May 2009 National Renewable Energy Laboratory:
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  24. Tarascan, J.M. ; Armand, M. Issues and challenges facing rechargeable lithium batteries. 2001 J Nat. 414 359-367

Cocites

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  1. Lithiated Prussian blue analogues as positive electrode active materials for stable non-aqueous lithium-ion batteries. (2022). He, Guang ; Kan, Wang Hay ; Yin, Wen ; Chen, Huaican ; Avdeev, Maxim ; Zhang, Ziheng.
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  2. High-energy and durable lithium metal batteries using garnet-type solid electrolytes with tailored lithium-metal compatibility. (2022). Chang, Jaemyung ; Badding, Michael ; Kim, Hyungsub ; Song, Zhen ; Kang, Kisuk ; Park, Seong Yong ; Jung, Sung-Kyun ; Yoon, Kyungho ; Wang, Yan ; Miara, Lincoln ; Roev, Victor.
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  3. A stable quasi-solid electrolyte improves the safe operation of highly efficient lithium-metal pouch cells in harsh environments. (2022). Zhou, Haoshen ; He, Ping ; Zhu, Xingyu ; Yang, Huijun ; Chang, Zhi.
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  4. A dual-function liquid electrolyte additive for high-energy non-aqueous lithium metal batteries. (2022). Wang, Chengxin ; Lei, Danni ; Chen, Jinghao ; Li, Huiyi ; Wu, Yuan ; Zhang, Yuji.
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  5. Improving the oxygen redox reversibility of Li-rich battery cathode materials via Coulombic repulsive interactions strategy. (2022). Schuck, Gotz ; Zhou, Dong ; Tang, Yuxin ; Wong, Deniz ; Ning, DE ; Li, Qingyuan ; Liu, Xiangfeng ; Zhang, Nian ; Chen, Zhenhua.
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  6. Optical sensors for operando stress monitoring in lithium-based batteries containing solid-state or liquid electrolytes. (2022). Tarascon, Jean-Marie ; Gervillie, Charlotte ; Huang, Jiaqiang ; Betermier, Fanny ; Daher, Nour ; Seitz, Jan Roman ; Marchini, Florencia ; Blanquer, Laura Albero.
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  7. Suppressing electrolyte-lithium metal reactivity via Li+-desolvation in uniform nano-porous separator. (2022). Amine, Khalil ; Liu, Xiang ; Tang, Yaping ; Wang, Qianqian ; Sheng, LI ; Xu, Gui-Liang ; Chen, Zonghai ; Cui, Hao.
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  8. Thermal Abuse Tests on 18650 Li-Ion Cells Using a Cone Calorimeter and Cell Residues Analysis. (2022). Ubaldi, Sofia ; Bracciale, Maria Paola ; Mele, Maria Luisa ; Russo, Paola ; di Bari, Cinzia ; Mazzaro, Michele ; Santarelli, Maria Laura.
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  9. High-Performance Electric/Hybrid Vehicle—Environmental, Economic and Technical Assessments of Electrical Accumulators for Sustainable Mobility. (2022). Calabria, Alfonso ; Capata, Roberto.
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  10. Life-Related Hazards of Materials Applied to Mg–S Batteries. (2022). Siczek, Krzysztof.
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  11. A review on thermal management of lithium-ion batteries for electric vehicles. (2022). Fan, Yilin ; Luo, Lingai ; Li, Zhao ; Zhang, Xinghui ; Du, Zhengyu.
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  13. Improving the alkali metal electrode/inorganic solid electrolyte contact via room-temperature ultrasound solid welding. (2021). Mao, Zhiyong ; Wang, Dajian ; Chen, Jing Jing.
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  14. High dielectric barium titanate porous scaffold for efficient Li metal cycling in anode-free cells. (2021). Wang, Chao ; Wagemaker, Marnix ; Ganapathy, Swapna ; Thijs, Michel ; Liu, Ming.
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  15. Applications of Carbon in Rechargeable Electrochemical Power Sources: A Review. (2021). Wrobel, Justyna ; Lach, Jakub ; Czerwiski, Andrzej.
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  16. Enhanced Performance of LiAl 0.1 Mn 1.9 O 4 Cathode for Li-Ion Battery via TiN Coating. (2021). Papavasiliou, Joan ; Kassavetis, Spyros ; Angelopoulou, Pinelopi ; Avgouropoulos, George ; Patsalas, Panos ; Sowik, Grzegorz ; Karfaridis, Dimitris.
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  17. An Open-Hardware and Low-Cost Maintenance Tool for Light-Electric-Vehicle Batteries. (2021). di Rienzo, Roberto ; Baronti, Federico ; Carloni, Andrea ; Saletti, Roberto ; Roncella, Roberto.
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  18. Advanced and Emerging Negative Electrodes for Li-Ion Capacitors: Pragmatism vs. Performance. (2021). Abdelhamid, Muhammad E ; Cavallo, Carmen ; Lai, Samson Yuxiu ; Koposov, Alexey Y ; Lou, Fengliu.
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  19. How do new use environments influence a technologys knowledge trajectory? A patent citation network analysis of lithium-ion battery technology. (2021). Schmidt, Tobias ; Beuse, Martin ; Zhang, Huiting ; Malhotra, Abhishek.
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  20. Mitigation strategies for Li-ion battery thermal runaway: A review. (2021). Pecht, Michael ; Kong, Lingxi ; Kwon, Daeil ; Lee, Jinwoo ; Xu, Bin.
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  21. Understanding electrochemical capacitors with in-situ techniques. (2021). Yasin, Amina ; Pal, Bhupender ; Jose, Rajan ; Sofer, Zdnek ; Yang, Chun-Chen ; Zabihi, Fatemeh ; Tebyetekerwa, Mike ; Kaur, Rupinder.
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  22. Impedance-based diagnosis of internal mechanical damage for large-format lithium-ion batteries. (2021). Xing, Bobin ; Xiao, Feiyu ; Kong, Lingzhao.
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  23. Lithium Storage in Nanoporous Complex Oxide 12CaO•7Al 2 O 3 (C12A7). (2020). Chroneos, Alexander ; Kuganathan, Navaratnarajah.
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  24. Biomass-Derived Graphitic Carbon Encapsulated Fe/Fe 3 C Composite as an Anode Material for High-Performance Lithium Ion Batteries. (2020). Liu, Ying ; Lee, Younki ; Haridas, Anupriya K ; Heo, Jungwon ; Ahn, Jou-Hyeon ; Sun, Yuanzheng.
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  25. Synthesis, Crystal Structure, and Ionic Conductivity of MgAl 2-x Ga x Cl 8 and MgGa 2 Cl 7 Br. (2020). Nagata, Ayaka ; Saito, Ryo ; Tomita, Yasumasa ; Kohno, Yoshiumi ; Yamane, Yohei.
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  26. Role of TiO 2 Phase Composition Tuned by LiOH on The Electrochemical Performance of Dual-Phase Li 4 Ti 5 O 12 -TiO 2 Microrod as an Anode for Lithium-Ion Battery. (2020). Habib, Abdulloh ; Caesarendra, Wahyu ; Noerochim, Lukman ; Kosasih, Buyung ; Prihandoko, Bambang ; Subhan, Achmad ; Nimah, Yatim Lailun.
    In: Energies.
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  27. Detailing the Self-Discharge of a Cathode Based on a Prussian Blue Analogue. (2020). Ruf, Thomas ; Mullaliu, Angelo ; Musella, Elisa ; Giorgetti, Marco ; Denecke, Reinhard ; Aquilanti, Giuliana ; Tonelli, Domenica ; Huth, Paula.
    In: Energies.
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  28. Effect of FSI Based Ionic Liquid on High Voltage Li-Ion Batteries. (2020). Huo, YU ; Zhao, Yongqi ; Zhang, Wenlin.
    In: Energies.
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  29. Electrospun Core-Shell Nanofiber as Separator for Lithium-Ion Batteries with High Performance and Improved Safety. (2019). Li, Yanxi ; Zhao, Yun ; Liang, Zheng.
    In: Energies.
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  30. Defect, Diffusion and Dopant Properties of NaNiO 2 : Atomistic Simulation Study. (2019). Kuganathan, Navaratnarajah ; Iyngaran, Poobalasuntharam ; Kaushalya, Ruwani ; Chroneos, Alexander.
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  31. Atomistic Simulations of the Defect Chemistry and Self-Diffusion of Li-ion in LiAlO 2. (2019). Sgourou, E N ; Dark, J ; Kuganathan, N ; Chroneos, A ; Panayiotatos, Y.
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  32. Synthesis of LiNi 0.85 Co 0.14 Al 0.01 O 2 Cathode Material and its Performance in an NCA/Graphite Full-Battery. (2019). Widiyandari, Hendri ; Muzayanha, Soraya Ulfa ; Yudha, Cornelius Satria ; Purwanto, Agus ; Sutopo, Wahyudi ; Iskandar, Ferry.
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  33. Theoretical simulation of the optimal relation between active material, binder and conductive additive for lithium-ion battery cathodes. (2019). Silva, M M ; Costa, C M ; Goren, A ; Miranda, D ; Lanceros-Mendez, S ; Almeida, A M.
    In: Energy.
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  34. Overcharge investigation of large format lithium-ion pouch cells with Li(Ni0.6Co0.2Mn0.2)O2 cathode for electric vehicles: Thermal runaway features and safety management method. (2019). Wang, Hsin ; Zhu, Xiaoqing ; Yi, MI ; Tong, Lei.
    In: Energy.
    RePEc:eee:energy:v:169:y:2019:i:c:p:868-880.

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  35. The lithium-ion battery: State of the art and future perspectives. (2018). Pasaoglu, Guzay ; Carvalho, Monica ; Dufo-Lopez, Rodolfo ; Zubi, Ghassan.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:89:y:2018:i:c:p:292-308.

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  36. Energy storage system: Current studies on batteries and power condition system. (2018). Zhang, Chao ; Lin, Meng-Chang ; Cao, Peng-Fei ; Wei, Yi-Li.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:82:y:2018:i:p3:p:3091-3106.

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  37. Temperature rise prediction of lithium-ion battery suffering external short circuit for all-climate electric vehicles application. (2018). Chen, Zeyu ; Li, Xinggang ; Lu, Jiahuan ; Xiong, Rui.
    In: Applied Energy.
    RePEc:eee:appene:v:213:y:2018:i:c:p:375-383.

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  38. Comparison of Lithium-Ion Anode Materials Using an Experimentally Verified Physics-Based Electrochemical Model. (2017). Fan, Hengbin ; Zhou, Xuan ; Fu, Rujian ; Xiong, Rui ; Zhang, XI ; Jagadale, Ajay ; Blaisdell, Douglas.
    In: Energies.
    RePEc:gam:jeners:v:10:y:2017:i:12:p:2174-:d:123532.

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  39. Adsorption-based synthesis of Co3O4/C composite anode for high performance lithium-ion batteries. (2017). Wang, Shaofeng ; Shao, Zongping ; Sunarso, Jaka ; Xu, Xiaomin ; Zhu, Yanping .
    In: Energy.
    RePEc:eee:energy:v:125:y:2017:i:c:p:569-575.

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  40. Graphene or h-BN paraffin composite structures for the thermal management of Li-ion batteries: A multiscale investigation. (2017). Mortazavi, Bohayra ; Rabczuk, Timon ; Cuniberti, Gianaurelio ; Mohebbi, Farzad ; Yang, Hongliu .
    In: Applied Energy.
    RePEc:eee:appene:v:202:y:2017:i:c:p:323-334.

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  41. Voltage fault diagnosis and prognosis of battery systems based on entropy and Z-score for electric vehicles. (2017). Wang, Zhenpo ; Zhang, Lei ; Liu, Peng ; Hong, Jichao.
    In: Applied Energy.
    RePEc:eee:appene:v:196:y:2017:i:c:p:289-302.

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  42. Clay-like mechanical properties for the jellyroll of cylindrical Lithium-ion cells. (2017). Wang, Wenwei ; Lin, Cheng ; Yang, Sheng .
    In: Applied Energy.
    RePEc:eee:appene:v:196:y:2017:i:c:p:249-258.

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  43. Recent progresses on nickel-rich layered oxide positive electrode materials used in lithium-ion batteries for electric vehicles. (2017). Ding, Yin ; Wu, Feng ; Zhao, Zhikun ; Wang, Rui ; Mu, Daobin .
    In: Applied Energy.
    RePEc:eee:appene:v:195:y:2017:i:c:p:586-599.

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  45. .

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  47. Perspectives for solid biopolymer electrolytes in dye sensitized solar cell and battery application. (2016). Singh, Rahul ; Varlikli, Canan ; Rhee, Hee-Woo ; Bhattacharya, B ; Polu, Anji Reddy .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:65:y:2016:i:c:p:1098-1117.

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  48. Application of tris(trimethylsilyl)borate to suppress self-discharge of layered nickel cobalt manganese oxide for high energy battery. (2016). Yu, LE ; Sun, Peiyi ; Liao, Xiaolin ; Fan, Weizhen ; Zhang, Liping ; Xing, Lidan ; Xu, Mengqing .
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    RePEc:eee:appene:v:175:y:2016:i:c:p:505-511.

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  49. Life Cycle Assessment and resource analysis of all-solid-state batteries. (2016). Troy, Stefanie ; Stenzel, Peter ; Uhlenbruck, Sven ; Finsterbusch, Martin ; Gehrke, Hans-Gregor ; Reppert, Thorsten ; Schreiber, Andrea.
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    RePEc:eee:appene:v:169:y:2016:i:c:p:757-767.

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  50. The effects of FEC (fluoroethylene carbonate) electrolyte additive on the lithium storage properties of NiO (nickel oxide) nanocuboids. (2013). Chen, Da-Peng ; Guo, Zaiping ; Wang, Xiao-Lin ; Li, LI ; Seng, Kuok Hau ; Liu, Hua Kun .
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    RePEc:eee:energy:v:58:y:2013:i:c:p:707-713.

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