Lithium Air Battery: Alternate Energy Resource for the Future
Awan Zahoor, Maria Christy, Yun-Ju Hwang, Kee-Suk Nahm
J. Electrochem. Sci. Technol. 2012;3(1):14-23.     DOI: https://doi.org/10.5229/JECST.2012.3.1.14
Citations to this article as recorded by Crossref logo
Fundamentals, recent developments and prospects of Lithium and non-Lithium electrochemical rechargeable battery systems
Maitri Patel, Kuldeep Mishra, Ranjita Banerjee, Jigar Chaudhari, D.K. Kanchan, Deepak Kumar
Journal of Energy Chemistry.2023;[Epub]     CrossRef
Structural and electronic properties of fluorine-doped lithium oxide as a solid electrolyte interphase for lithium air batteries
Nilüfer ERTEKİN
Journal of Scientific Reports-A.2023; (055): 94.     CrossRef
Electric aviation: A review of concepts and enabling technologies
Bright Appiah Adu-Gyamfi, Clara Good
Transportation Engineering.2022; 9: 100134.     CrossRef
Evolving aprotic Li–air batteries
Zhenzhen Wu, Yuhui Tian, Hao Chen, Liguang Wang, Shangshu Qian, Tianpin Wu, Shanqing Zhang, Jun Lu
Chemical Society Reviews.2022; 51(18): 8045.     CrossRef
Aprotic lithium air batteries with oxygen-selective membranes
Asad A. Naqvi, Awan Zahoor, Asif Ahmed Shaikh, Faaz Ahmed Butt, Faizan Raza, Inam Ul Ahad
Materials for Renewable and Sustainable Energy.2022; 11(1): 33.     CrossRef
Special report on the achievements realized by researchers of Chinese Academy of Sciences in the field of energy storage technologies
Xianfeng Li, Guanglei Cui
Journal of Energy Storage.2018; 18: 285.     CrossRef
A metal–organic-framework/carbon composite with enhanced bifunctional electrocatalytic activities towards oxygen reduction/evolution reactions
Tianyu Fan, Fengxiang Yin, Hao Wang, Xiaobo He, Guoru Li
International Journal of Hydrogen Energy.2017; 42(27): 17376.     CrossRef
Carbon nanotube/Co3O4 nanocomposites selectively coated by polyaniline for high performance air electrodes
Jin Young Kim, Yong Joon Park
Scientific Reports.2017;[Epub]     CrossRef
PEDOT:PSS as multi-functional composite material for enhanced Li-air-battery air electrodes
Dae Ho Yoon, Seon Hye Yoon, Kwang-Sun Ryu, Yong Joon Park
Scientific Reports.2016;[Epub]     CrossRef
Nanofiber Carbon-Supported Phthalocyanine Metal Complexes as Solid Electrocatalysts for Lithium-Air Batteries
Anupriya Arul, Maria Christy, Mi Young Oh, Yun Sung Lee, Kee Suk Nahm
Electrochimica Acta.2016; 218: 335.     CrossRef
Carbon/titanium oxide supported bimetallic platinum/iridium nanocomposites as bifunctional electrocatalysts for lithium-air batteries
Awan Zahoor, Maria Christy, Yongbin Kim, Anupriya Arul, Yun Sung Lee, Kee Suk Nahm
Journal of Solid State Electrochemistry.2016; 20(5): 1397.     CrossRef
Review on mechanisms and continuum models of multi-phase transport phenomena in porous structures of non-aqueous Li-Air batteries
Jinliang Yuan, Jong-Sung Yu, Bengt Sundén
Journal of Power Sources.2015; 278: 352.     CrossRef
Improved lithium oxygen battery performance by addition of palladium nanoparticles on manganese oxide nanorod catalysts
Awan Zahoor, Maria Christy, Jeong Sook Jeon, Yun Sung Lee, Kee Suk Nahm
Journal of Solid State Electrochemistry.2015; 19(5): 1501.     CrossRef
Increasing the reversibility of Li–O2 batteries with caterpillar structured α–MnO2/N–GNF bifunctional electrocatalysts
Awan Zahoor, Maria Christy, Hosaeng Jang, Kee Suk Nahm, Yun Sung Lee
Electrochimica Acta.2015; 157: 299.     CrossRef
Self-standing, binder-free electrospun Co3O4/carbon nanofiber composites for non-aqueous Li-air batteries
Myeong Jun Song, Il To Kim, Young Bok Kim, Moo Whan Shin
Electrochimica Acta.2015; 182: 289.     CrossRef
The bifunctional electrocatalytic activity of perovskite La0.6Sr0.4CoO3−δ for oxygen reduction and evolution reactions
Mi Young Oh, Jeong Sook Jeon, Jong Ju Lee, Pil Kim, Kee Suk Nahm
RSC Advances.2015; 5(25): 19190.     CrossRef
Carbon Sphere/Fe3O4Nanocomposite for Li/air Batteries
Chang Sung Park, Yong Joon Park
Journal of the Korean Electrochemical Society.2014; 17(2): 124.     CrossRef
A simple method for surface modification of carbon by polydopamine coating for enhanced Li–air batteries
Dae Sik Kim, Yong Joon Park
Electrochimica Acta.2014; 132: 297.     CrossRef
A comparative study of nanostructured α and δ MnO2 for lithium oxygen battery application
Awan Zahoor, Ho Saeng Jang, Jeong Sook Jeong, Maria Christy, Yun Ju Hwang, Kee Suk Nahm
RSC Advances.2014; 4(18): 8973.     CrossRef
New strategy toward enhanced air electrode for Li–air batteries: apply a polydopamine coating and dissolved catalyst
Taek Han Yoon, Yong Joon Park
RSC Advances.2014; 4(34): 17434.     CrossRef
Effect of multi-catalysts on rechargeable Li–air batteries
Dae Sik Kim, Yong Joon Park
Journal of Alloys and Compounds.2014; 591: 164.     CrossRef
Buckypaper electrode containing carbon nanofiber/Co3O4 composite for enhanced lithium air batteries
Dae Sik Kim, Yong Joon Park
Solid State Ionics.2014; 268: 216.     CrossRef
Ketjen black/Co3O4 nanocomposite prepared using polydopamine pre-coating layer as a reaction agent: Effective catalyst for air electrodes of Li/air batteries
Dae Sik Kim, Yong Joon Park
Journal of Alloys and Compounds.2013; 575: 319.     CrossRef