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Primary Batteries—Lithium Batteries

1981
Lithium is a unique metal because of its large negative standard potential and low equivalent weight. As a result, batteries made with lithium as an anode show great promise for wide use as energy sources and have already seen service in advanced applications.
Marvin L. Kronenberg, George E. Blomgren
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Lithium/water system: primary batteries

Electrochimica Acta, 1998
A study of the electrochemistry of lithium aimed to the development of aqueous batteries is presented. The study includes experimental characterization of lithium dissolution in concentrated aqueous KOH solutions. Gathering of the hydrogen evolved at the lithium surface allowed for the delineation of the partial cathodic processes at the anode.
M. Urquidi-Macdonald   +4 more
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Advanced Lithium Primary Batteries: Key Materials, Research Progresses and Challenges

The Chemical Record, 2022
AbstractIn recent years, with the vigorous development and gradual deployment of new energy vehicles, more attention has been paid to the research on lithium‐ion batteries (LIBs). Compared with the booming LIBs, lithium primary batteries (LPBs) own superiority in specific energy and self‐discharge rate and are usually applied in special fields such as ...
Yan Liu   +7 more
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The Primary Nonaqueous Lithium-Air Battery

ECS Meeting Abstracts, 2009
Abstract not Available.
S. Reza Younesi   +3 more
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Primary Lithium Air Batteries

2014
Lithium air batteries exhibit much higher energy density than most other conventional energy-storage systems. Although there are significant barriers that need to be overcome before the commercialization of primary lithium air batteries, these barriers are less difficult to be solved than those in the rechargeable lithium air batteries.
Ji-Guang Zhang, Jie Xiao, Wu Xu
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Electrochemical Noise Measurements in Primary Lithium Batteries

ECS Meeting Abstracts, 2019
Electrochemical noise measurements are well known within the corrosion community where information regarding local corrosion events can be extracted from an equilibrium measurement[1]. Extension of these measurements to the batteries can be a valuable non-invasive tool to diagnose the state of the batteries.
Can Berk Uzundal   +2 more
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ChemInform Abstract: A Lithium/C2F Primary Battery.

ChemInform, 1988
AbstractThe discharge behavior of the Li/C2F battery in a 1 M LiClO4/propylene carbonate electrolyte is investigated.
R. HAGIWARA   +3 more
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Solvothermally exfoliated fluorographene for high-performance lithium primary batteries

Nanoscale, 2014
High-quality fluorographene (FG) was prepared by solvothermal exfoliation of fluorinated graphite (F-graphite) through intercalation of acetonitrile and chloroform with low boiling points. High-yield production of FG was demonstrated by wrinkled few-layered structures with disordered edges and poor regularity along the stacking direction.
Chuanbin, Sun   +5 more
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Energy efficient electrodes for lithium-ion batteries: Recovered and processed from spent primary batteries

Journal of Hazardous Materials, 2020
In an attempt to develop low cost, energy efficient and advanced electrode material for lithium-ion batteries (LIBs), waste-to-wealth derived as well as value added spent battery materials as potential alternatives assume paramount importance. By combining the low lithiation potential advantages, one can arrive at energy efficient electrodes bestowed ...
Mayanglambam Manolata Devi   +8 more
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Alkaline electrolyte—lithium miniature primary batteries

Journal of Power Sources, 1981
Abstract Alkaline aqueous electrolyte miniature batteries, and nonaqueous electrolyte—lithium miniature batteries are compared with respect to constructional features, energy density, rate capability, self-discharge, reliability, and seals. The criteria for valid comparison of such data are discussed.
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