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Dissertations / Theses on the topic 'Room temperature sodium battery'

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1

Martine, Milena. "Na-Sb-Sn-based negative electrode materials for room temperature sodium cells for stationary applications." Doctoral thesis, Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2017. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-226494.

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The implementation of energy storage systems in the current electrical grid will increase the grid's reliability and e ciency. Room temperature sodium batteries are seen as potential technology, especially to assist renewable energy generation sources. Currently, suggested negative electrode materials, however, are still not satisfactory for practical use in terms of fabrication costs, gravimetric /volumetric energy densities, cyclability, and irreversible capacity losses occur at the rst cycle. The literature describes various strategies that enhance the specific capacity and/or the cyclabili
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2

Gray, Gary E. "Stability of sodium electrodeposited from a series of room temperature chloroaluminate molten salts." Diss., Georgia Institute of Technology, 1996. http://hdl.handle.net/1853/11107.

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3

YANG, HUAN. "Functional Electrolytes for Advanced Electrochemical Performance in Sodium and Potassium Secondary Batteries." Kyoto University, 2020. http://hdl.handle.net/2433/259756.

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4

Li, Si. "HIGHLY CONDUCTIVE SOLID POLYMER ELECTROLYTE CONTAINING LiBOB AT ROOM TEMPERATURE FOR ALL SOLID STATE BATTERY." University of Akron / OhioLINK, 2017. http://rave.ohiolink.edu/etdc/view?acc_num=akron1490481514905008.

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5

Martinsson, Patrik. "State of Charge Estimation in a High Temperature Sodium Nickel Chloride Battery Using Kalman Filter." Thesis, Linköping University, Department of Electrical Engineering, 2008. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-11173.

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<p>In today’s heavy industry there are applications demanding high power supply in certain periods of a working cycle. A typical case might be startup of heavy machinery or just keeping a certain point in a distribution network at a certain energy level. To deal with this different techniques might be used, one way is to introduce a battery as an energy reserve in the system. One battery studied at ABB for this purpose is the so called High Temperature Sodium Nickel Chloride battery and a model of this battery has been developed at ABB. When operating a battery of the mentioned type in an appli
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6

Lodge, Andrew. "The electrochemical reduction of oxygen in room temperature ionic liquids for use in a lithium-air battery." Thesis, University of Southampton, 2015. https://eprints.soton.ac.uk/380892/.

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Experiments were undertaken to investigate the electrochemical reduction of oxygen (O2) in various room temperature ionic liquids (RTILs) with the aim of using a RTIL as an electrolyte in a lithium-air battery cell. Cyclic voltammetry (CV) in oxygenated RTILs was undertaken at Au and Pt microdisc electrodes. It was confirmed that the reduction of O2 in pyrrolidinium based RTILs occurs in two one-electron reduction steps, from O2 to superoxide (O2•−) and from O2•− to peroxide (O22−). It was found that the reduction of O2 was fully reversible in pyrrolidinium based ionic liquids. It was found th
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7

Yang, Run. "A Superionic Conductive Solid Polymer Electrolyte Based Solid Sodium Metal Batteries with Stable Cycling Performance at Room Temperature." University of Akron / OhioLINK, 2021. http://rave.ohiolink.edu/etdc/view?acc_num=akron1619741453185762.

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8

SHUBHAM, KAUSHIK. "A Study on Phosphides-based Negative Electrode Materials for Sodium Secondary Batteries Using Ionic Liquid Electrolytes." Kyoto University, 2020. http://hdl.handle.net/2433/259063.

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9

Fischer, Pauline Josephine [Verfasser], Fritz E. [Akademischer Betreuer] Kühn, Fritz E. [Gutachter] Kühn, and Tom [Gutachter] Nilges. "Room Temperature Ionic Liquids as Electrolytes for Sodium Ion Batteries / Pauline Josephine Fischer ; Gutachter: Fritz E. Kühn, Tom Nilges ; Betreuer: Fritz E. Kühn." München : Universitätsbibliothek der TU München, 2019. http://d-nb.info/1189815613/34.

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10

Pye, Stephen L. "The electrochemical behavior of iron, copper, and nickel electrodes in sodium chloride buffered, neutral room temperature aluminum chloride : 1-methyl-3-ethylimidazolium chloride molten salt." Thesis, Georgia Institute of Technology, 1996. http://hdl.handle.net/1853/11126.

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11

Martine, Milena [Verfasser], Jürgen [Akademischer Betreuer] [Gutachter] Eckert, and Sohyun [Gutachter] Park. "Na-Sb-Sn-based negative electrode materials for room temperature sodium cells for stationary applications / Milena Martine ; Gutachter: Jürgen Eckert, SoHyun Park ; Betreuer: Jürgen Eckert." Dresden : Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2017. http://d-nb.info/1136571396/34.

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12

Hao, Yong. "Sulfur Based Electrode Materials For Secondary Batteries." FIU Digital Commons, 2016. http://digitalcommons.fiu.edu/etd/2582.

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Developing next generation secondary batteries has attracted much attention in recent years due to the increasing demand of high energy and high power density energy storage for portable electronics, electric vehicles and renewable sources of energy. This dissertation investigates sulfur based advanced electrode materials in Lithium/Sodium batteries. The electrochemical performances of the electrode materials have been enhanced due to their unique nano structures as well as the formation of novel composites. First, a nitrogen-doped graphene nanosheets/sulfur (NGNSs/S) composite was synthesized
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13

Mechernene, Lahcène. "Comportement des centres colores dans les fluorines sous l'effet d'irradiations lumineuses intenses : realisation d'un laser a centres "f::(2a") dans le fluorure de strontium dope au sodium." Caen, 1988. http://www.theses.fr/1988CAEN2013.

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Regeneration in situ par une lampe a mercure des centres "f::(2a") dans caf::(2):na eclaire par le faisceau pseudo continu fortement focalise d'un laser a krypton. Nous avons trouve que cette regeneration est efficace mais nous n'avons pas exploite ce resultat encourageant. Comportement des centres "f::(2a") dans caf::(2):na et srf::(2):na apres leur illumination par un flash au xenon : les centres "f::(2a") sont notablement decolores pendant le coup de flash (surtout dans srf::(2):na), ils se reforment spontanement en grande partie apres quelques dizaines de microsecondes et plus completement
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14

Pilli, Aparna. "Atomic Layer Deposition of Boron Oxide and Boron Nitride for Ultrashallow Doping and Capping Applications." Thesis, University of North Texas, 2020. https://digital.library.unt.edu/ark:/67531/metadc1752373/.

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The deposition of boron oxide (B₂O₃) films on silicon substrates is of significant interest in microelectronics for ultrashallow doping applications. However, thickness control and conformality of such films has been an issue in high aspect ratio 3D structures which have long replaced traditional planar transistor architectures. B₂O₃ films are also unstable in atmosphere, requiring a suitable capping barrier for passivation. The growth of continuous, stoichiometric B₂O₃ and boron nitride (BN) films has been demonstrated in this dissertation using Atomic Layer Deposition (ALD) and enhanced ALD
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15

Doualan, Jean-Louis. "Lasers a centres colores pompes par un flash ou par une diode laser." Caen, 1988. http://www.theses.fr/1988CAEN2030.

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Un laser utilisant une lampe flash a ete construit. Il fonctionne avec les centres f::(2)**(+) dans lif a 77 k, f::(2)**(+) dans naf et (f::(2)**(+))::(a) dans naf:li**(+) a temperature ambiante. Nous avons etudie les caracteristiques lasers. L'etude a ete poussee plus loin pour le centre f::(2)**(+) dans lif avec des mesures sur les effets d'echauffement, le gain et les pertes dans le materiau. Pour la premiere fois nous avons utilise une diode laser pour pomper des centres colores. Le laser ainsi obtenu est peu encombrant et moins onereux que le pompage par deux lasers en tandem necessaire p
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16

Chang, Po-Chia, and 張博嘉. "The electrochemical reaction mechanism of pyrite FeS2 as Cathode for Room Temperature Sodium-Sulfur Battery." Thesis, 2015. http://ndltd.ncl.edu.tw/handle/71292640543441077898.

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碩士<br>國立臺灣師範大學<br>化學系<br>103<br>Efficient electrical energy storage has attracted intense attention due to power demend in next generation of electric vehicles and stationary applications. Rechargeable battery has viewed as good approach for energy storage. To aspire the higher energy density than traditional lithium ion battery used wildly, room temperature sodium-sulfur batteries (RT Na-S batteries) are especially attractive because of their high specific energy. In this thesis, a iron pyrite FeS2 material was investigated as sulfur source in the cathode electrode of RT Na-S battery. We fou
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17

Lin, Chi-Feng, and 林祺峰. "Effect of sodium lactate and sodium nitrite on keeping quality of braised chicken leg quarter storage at room temperature." Thesis, 2014. http://ndltd.ncl.edu.tw/handle/73399565567640054142.

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碩士<br>東海大學<br>畜產與生物科技學系<br>103<br>本研究以柵欄技術的概念應用於傳統滷製食品保存性之改善。試驗採雙因子反應曲面法之試驗設計,以150ppm亞硝酸鈉及2%乳酸鈉為中心點,探討亞硝酸鈉(100-200ppm)與乳酸鈉(1.0-3.0%)之處理組合對滷製雞腿貯藏期間品質之影響。添加150ppm亞硝酸鈉和2%乳酸鈉對於外部亮度值、pH值、TBARS值以及感官品評總接受度結果皆達顯著影響。亮度值隨著貯存期間增加而有上升之趨勢,並且與pH值具有負相關。總生菌數之結果於保存期間出現零星生長之現象,與添加試驗處理並無顯著,其可能原因在於包裝袋之微透氧性照成之差異。此外,於14天後於2%乳酸鈉及150ppm之亞硝酸鈉處理組未檢測到乳酸菌及大腸菌群生長。重疊統計分析製作出之等高線圖得知,135至160 ppm亞硝酸鈉對應1.7%到2.6%乳酸鈉之最適範圍內。實驗所設定之中心點落於最適區域內,而有最佳保存性之產品品質及總接受度。總體而言,添加亞硝酸鈉150ppm配合2%乳酸鈉經過二次殺菌處理於常溫下貯存可於常溫下進行保存。
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18

Lin, Hsin-mu. "Adsorption of alcohol vapor by sodium chloride aerosol at room temperature an experimental study /." 1992. http://catalog.hathitrust.org/api/volumes/oclc/26103308.html.

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Thesis (M.S.)--University of Wisconsin--Madison, 1992.<br>Typescript. eContent provider-neutral record in process. Description based on print version record. Includes bibliographical references (leaves 85-87).
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19

Kuo, Che-liang, and 郭哲良. "Study and Characterization of Room Temperature Ionic Liquids as Safety Electrolytes for Lithium Ion Battery." Thesis, 2012. http://ndltd.ncl.edu.tw/handle/56598159874106673730.

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碩士<br>大同大學<br>化學工程學系(所)<br>100<br>Due to the volatilization and inflammation of traditional organic solvent as the main components of electrolyte in the lithium ion batteries, in this study, we choose room temperature ion liquid which has low volatility, nonflammable, thermal stability, wide liquid range and the water and air stability to replace traditional organic electrolytes. Room temperature ion liquids (RTILs) we choose quaternary ammonium salts as cations, such as N-butyl-N-methylpyrrolidinium, N-butyl-N-methylpiperidinum, N-allyl-N-methylpyrrolidinium, Borane-trimethylamine complex and
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20

Deng, Jin-jia, and 鄧晉嘉. "The study in transport characteristics of binary LiTFSI-urea room temperature molten salt electrolytes and a trace of additive forinfluencing property of secondary lithium battery." Thesis, 2007. http://ndltd.ncl.edu.tw/handle/72627671086860012446.

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碩士<br>國立雲林科技大學<br>化學工程與材料工程研究所<br>95<br>This study investigates the transport characteristics of binary lithium bis(trifluoromethane sulfone)imide (LiN(SO2CF3)2, LiTFSI)-urea room temperature molten salts which is considered to used as the electrolyte for Li ion secondary battery. The differential scanning calorimetry (DSC) was used for obtaining the phase diagram of the binary system. It was observed that when the mole ratio of LiTFSI and urea was 20:80 mol%, this system had the lowest eutectic point of 230.19 K. The conductivity of the binary molten salt increased with increasing temperatur
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21

Hsu, Chen-Ruei, and 許辰瑞. "The study in transport characteristics of binary LiTFSI-acetamide room temperature molten salt electrolytes and a trace of additive for influencing property of secondary lithium battery." Thesis, 2007. http://ndltd.ncl.edu.tw/handle/12504974328850303466.

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碩士<br>國立雲林科技大學<br>化學工程與材料工程研究所<br>95<br>In this study, transport properties of the lithium bis(trifluoromethane sulfone)imide (LiTFSI)-acetamide binary room-temperature molten salt(RTMS) system for lithium battery were measured with adapted temperature and composition. The phase diagram has been determined by Differential Scanning Calorimeter(DSC) and Thermogravimetric Analysis (TGA) . The electric conductivity and density of the binary melts were also measured, the results were attributed to better selection of electrolyte compositions for Lithium battery. Cathodic lithium manganese oxide fil
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22

Ding, Chung-Wei, and 丁忠威. "The study in transport characteristics of binary LiTFSI-MCONH2(M=H, C2H5,) room temperature molten salt electrolytes and a trace ofadditive for influencing property of secondary lithium battery." Thesis, 2008. http://ndltd.ncl.edu.tw/handle/64095992896676119695.

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碩士<br>雲林科技大學<br>化學工程與材料工程研究所<br>96<br>In this study, transport properties of the binary lithium bis(trifluoromethane sulfone)imide (LiTFSI)-MCONH2(M=H, C2H5) room-temperature molten salt(RTMS) systems for lithium battery were measured with adapted temperature and composition.The phase diagram has been determined by Differential Scanning Calorimeter(DSC)and Thermogravimetric Analysis (TGA) . The influence of transport characteristics and structures of RTMS with carbon chain solvents were investigated. However, the analysisreveal that 20:80 mol% LiTFSI-formamide and 20:80 mol% LiTFSI-propionamid
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23

Wen, Chao Lee. "A new chemical synthesis for vanadium sulfide as high performance cathode." Thesis, 2014. http://hdl.handle.net/1805/5500.

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Indiana University-Purdue University Indianapolis (IUPUI)<br>Since 1990s, rechargeable Li-ion batteries have been widely used in consumer electronics such as cell phones, global positioning systems (GPS), personnel digital assistants (PDA), digital cameras, and laptop computers. Recently Li-ion batteries received considerable attention as a major power source for electric vehicles. However, significant technical challenges still exist for widely deploying Li-ion batteries in electric vehicles. For instance, the energy density of Li-ion batteries is not high enough to support a long-distance co
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