Matches in SemOpenAlex for { <https://semopenalex.org/work/W3037730860> ?p ?o ?g. }
- W3037730860 endingPage "9402" @default.
- W3037730860 startingPage "9389" @default.
- W3037730860 abstract "Abstract Solution‐based, anionic doping represents a convenient strategy with which to improve upon the conductivity of candidate anode materials such as Li 4 Ti 5 O 12 (LTO). As such, novel synthetic hydrothermally‐inspired protocols have primarily been devised herein, aimed at the large‐scale production of unique halogen‐doped, micron‐scale, three‐dimensional, hierarchical LTO flower‐like motifs. Although fluorine (F) doping has been explored, the use of chlorine (Cl) dopants is the primary focus here. Several experimental variables, such as dopant amount, lithium hydroxide concentration, and titanium butoxide purity, were probed and perfected. Furthermore, the Cl doping process did not damage the intrinsic LTO morphology. The analysis, based on interpreting a compilation of SEM, XRD, XPS, and TEM‐EDS results, was used to determine an optimized dopant concentration of Cl. Electrochemical tests demonstrated an increased capacity via cycling of 12 % for a Cl‐doped sample as compared with pristine LTO. Moreover, the Cl‐doped LTO sample described in this study exhibited the highest discharge capacity yet reported at an observed rate of 2C for this material at 143mAh g −1 . Overall, these data suggest that the Cl dopant likely enhances not only the ion transport capabilities, but also the overall electrical conductivity of our as‐prepared structures. To help explain these favorable findings, theoretical DFT calculations were used to postulate that the electronic conductivity and Li diffusion were likely improved by the presence of increased Ti 3+ ion concentration coupled with widening of the Li migration channel." @default.
- W3037730860 created "2020-07-02" @default.
- W3037730860 creator A5008157236 @default.
- W3037730860 creator A5010190625 @default.
- W3037730860 creator A5012782890 @default.
- W3037730860 creator A5013790868 @default.
- W3037730860 creator A5017249593 @default.
- W3037730860 creator A5030670625 @default.
- W3037730860 creator A5034130133 @default.
- W3037730860 creator A5054436333 @default.
- W3037730860 creator A5057361433 @default.
- W3037730860 creator A5057863051 @default.
- W3037730860 creator A5077153113 @default.
- W3037730860 date "2020-07-08" @default.
- W3037730860 modified "2023-10-18" @default.
- W3037730860 title "Solution‐Based, Anion‐Doping of Li <sub>4</sub> Ti <sub>5</sub> O <sub>12</sub> Nanoflowers for Lithium‐Ion Battery Applications" @default.
- W3037730860 cites W154064253 @default.
- W3037730860 cites W1828563824 @default.
- W3037730860 cites W1843583777 @default.
- W3037730860 cites W1966156734 @default.
- W3037730860 cites W1970127494 @default.
- W3037730860 cites W1975883795 @default.
- W3037730860 cites W1977700257 @default.
- W3037730860 cites W1979544533 @default.
- W3037730860 cites W1981368803 @default.
- W3037730860 cites W1986731219 @default.
- W3037730860 cites W2004577570 @default.
- W3037730860 cites W2012026977 @default.
- W3037730860 cites W2014029886 @default.
- W3037730860 cites W2015784137 @default.
- W3037730860 cites W2019879118 @default.
- W3037730860 cites W2029263732 @default.
- W3037730860 cites W2037188697 @default.
- W3037730860 cites W2037640974 @default.
- W3037730860 cites W2050789827 @default.
- W3037730860 cites W2067854234 @default.
- W3037730860 cites W2068737964 @default.
- W3037730860 cites W2073663607 @default.
- W3037730860 cites W2073917568 @default.
- W3037730860 cites W2076025172 @default.
- W3037730860 cites W2083222334 @default.
- W3037730860 cites W2088148598 @default.
- W3037730860 cites W2088447626 @default.
- W3037730860 cites W2092098411 @default.
- W3037730860 cites W2095953845 @default.
- W3037730860 cites W2097272189 @default.
- W3037730860 cites W2102194372 @default.
- W3037730860 cites W2120701674 @default.
- W3037730860 cites W2133441006 @default.
- W3037730860 cites W2149309886 @default.
- W3037730860 cites W2164924493 @default.
- W3037730860 cites W2285540799 @default.
- W3037730860 cites W2298963891 @default.
- W3037730860 cites W2320493277 @default.
- W3037730860 cites W2331125572 @default.
- W3037730860 cites W2334524689 @default.
- W3037730860 cites W2411710251 @default.
- W3037730860 cites W2508735062 @default.
- W3037730860 cites W2524767344 @default.
- W3037730860 cites W2532530157 @default.
- W3037730860 cites W2558150720 @default.
- W3037730860 cites W2572030869 @default.
- W3037730860 cites W2734465920 @default.
- W3037730860 cites W2738765085 @default.
- W3037730860 cites W2755136021 @default.
- W3037730860 cites W2763721492 @default.
- W3037730860 cites W2783047531 @default.
- W3037730860 cites W2789563012 @default.
- W3037730860 cites W2808042472 @default.
- W3037730860 cites W2809330166 @default.
- W3037730860 cites W2896914028 @default.
- W3037730860 cites W2972108819 @default.
- W3037730860 cites W958473345 @default.
- W3037730860 doi "https://doi.org/10.1002/chem.202002489" @default.
- W3037730860 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32583564" @default.
- W3037730860 hasPublicationYear "2020" @default.
- W3037730860 type Work @default.
- W3037730860 sameAs 3037730860 @default.
- W3037730860 citedByCount "15" @default.
- W3037730860 countsByYear W30377308602021 @default.
- W3037730860 countsByYear W30377308602022 @default.
- W3037730860 countsByYear W30377308602023 @default.
- W3037730860 crossrefType "journal-article" @default.
- W3037730860 hasAuthorship W3037730860A5008157236 @default.
- W3037730860 hasAuthorship W3037730860A5010190625 @default.
- W3037730860 hasAuthorship W3037730860A5012782890 @default.
- W3037730860 hasAuthorship W3037730860A5013790868 @default.
- W3037730860 hasAuthorship W3037730860A5017249593 @default.
- W3037730860 hasAuthorship W3037730860A5030670625 @default.
- W3037730860 hasAuthorship W3037730860A5034130133 @default.
- W3037730860 hasAuthorship W3037730860A5054436333 @default.
- W3037730860 hasAuthorship W3037730860A5057361433 @default.
- W3037730860 hasAuthorship W3037730860A5057863051 @default.
- W3037730860 hasAuthorship W3037730860A5077153113 @default.
- W3037730860 hasBestOaLocation W30377308601 @default.
- W3037730860 hasConcept C113196181 @default.
- W3037730860 hasConcept C121332964 @default.
- W3037730860 hasConcept C127413603 @default.