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Diff Summary

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Visual Assets

这是实际图表资产输出,不是审计层重新推断。

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1figureFig. 13direct_caption_ref0.82[146.03, 61.95, 249.17, 173.37]Fig. 1. XRD patterns of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2.
2figureFig. 24direct_caption_ref0.82[57.05, 61.21, 433.75, 492.05]Fig. 2. SEM images of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2. x = (a) 1.0, (b) 0.9, (c) 0.7, (d) 0.5, (e) 0.3 and (f) 0.1.
3figureFig. 35direct_caption_ref0.82[152.06, 60.67, 235.65, 365.55]Fig. 3. First charge/discharge curves of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2.
4figureFig. 46direct_caption_ref0.82[153.24, 61.51, 242.42, 376.61]Fig. 4. (a) Electrochemical properties of mixed compounds ofLi2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2: ( & ) charge capacity and ( * ) discharge capacity. (b) Electrochemical properties of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2: ( & ) capacity retention and ( * ) initial capacity loss.
5figureFig. 57nearby_text_caption0.82[149.33, 61.61, 239.86, 178.42]Fig. 5. Cycle performance of the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound after fifty cycles.
6figureFig. 67direct_caption_ref0.82[150.56, 282.17, 238.63, 173.87]Fig. 6. Cyclic voltammograms of the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound. Scan rate is 0.1 mV/s. The voltage range is 2.0 -4.8 V.
7figureFig. 77direct_caption_ref0.82[149.22, 492.89, 240.55, 174.41]Fig. 7. Voltage profile of the cell during two cycles. Representative scans of XANES measurements are indicated.
8figureFig. 88direct_caption_ref0.82[151.76, 60.75, 244.92, 557.46]Fig. 8. (a) Mn K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during the first charge process. (b) Co K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during the first charge process. (c) Ni K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during the first charge process.
9figureFig. 99direct_caption_ref0.82[149.93, 61.61, 240.7, 543.61]Fig. 9. (a) Mn K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during 2 cycles. (b) Co K-edge XANES spectra for the Li[Li1/ 6Mn1/2Ni1/6Co1/6]O2 compound during 2 cycles. (c) Ni K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during 2 cycles.
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[53.07, 411.17, 240.66, 8.69]Experiments at PLS were supported in part by POSTECH.Experiments at PLS were supported in part by POSTECH.
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[171.89, 99.61, 163.34, 6.95]Materials Research Bulletin 43 (2008) 3543 -3552Materials Research Bulletin 43 (2008) 3543 -3552
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[391.75, 109.07, 111.36, 6.95]www.elsevier.com/locate/matresbu
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[50.12, 143.16, 439.71, 54.63]Electrochemical behaviors of Li[Li(1 x )/3Mn(2 x )/3Ni x /3Co x /3]O2 cathode series (0 < x < 1) synthesized by sucrose combustion process for high capacity lithium ion batteriesElectrochemical behaviors of Li[Li(1 x )/3Mn(2 x )/3Ni x /3Co x /3]O2 cathode series (0 < x < 1) synthesized by sucrose combustion process for high capacity lithium ion batteries
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[91.16, 207.17, 357.6, 14.17]Gu-Yeon Kim a, * , Seung-Beob Yi b , Yong Joon Park c , Ho-Gi Kim aGu-Yeon Kim a, * , Seung-Beob Yi b , Yong Joon Park c , Ho-Gi Kim a
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[59.19, 227.9, 418.91, 18.57]a Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology, 373-1 Guseong-dong, Yuseong-gu, Daejeon 305-701, Republic of Koreaa Department of Materials Science and Engineering, Korea Advanced Institute of Science and Technology, 373-1 Guseong-dong, Yuseong-gu, Daejeon 305-701, Republic of Korea
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[115.03, 247.86, 307.31, 8.59]b Energy Business Division Development Team, SAMSUNG SDI, 508 Sungsung-dong, Chenan,b Energy Business Division Development Team, SAMSUNG SDI, 508 Sungsung-dong, Chenan,
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[189.24, 259.66, 161.46, 6.77]Chungcheongnam-do 330-300, Republic of KoreaChungcheongnam-do 330-300, Republic of Korea
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[95.64, 267.76, 346.04, 8.65]c Division of Advanced Industrial Engineering, Kyonggi University, 94-6 Yiui-dong, Yeongtong-gu, Suwon,c Division of Advanced Industrial Engineering, Kyonggi University, 94-6 Yiui-dong, Yeongtong-gu, Suwon,
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[219.35, 279.56, 101.26, 6.77]Kyonggi-do, Republic of KoreaKyonggi-do, Republic of Korea
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[105.45, 292.47, 329.04, 16.93]Received 9 November 2007; received in revised form 21 December 2007; accepted 17 January 2008 Available online 29 January 2008Received 9 November 2007; received in revised form 21 December 2007; accepted 17 January 2008 Available online 29 January 2008
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[36.85, 329.56, 33.31, 7.9]AbstractAbstract
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[36.85, 346.64, 466.27, 73.59]A mixed cathode material between Li2MnO3 and Li[Mn1/3Ni1/3Co1/3]O2 for high capacity lithium secondary batteries was introduced in this study. It was prepared using the sucrose combustion process because this is a simple process. The oxidation states (1 x )/3Mn(2 x )/3Ni x /3Co x /3]O2 compounds were confirmed to be tetravalent, trivalent and divalent, respectively, via XANES measurements. Electrochemical charge/discharge studies showed that the highest first discharge capacity of 224 mAh/g was obtained in composition of x = 0.5 at a 0.2 C rate. The oxidation state of the Co and Ni ions in the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 changed to higher oxidation states, but that of the Mn ions did not change. # 2008 Elsevier Ltd. All rights reserved.A mixed cathode material between Li2MnO3 and Li[Mn1/3Ni1/3Co1/3]O2 for high capacity lithium secondary batteries was introduced in this study. It was prepared using the sucrose combustion process because this is a simple process. The oxidation states (1 x )/3Mn(2 x )/3Ni x /3Co x /3]O2 compounds were confirmed to be tetravalent, trivalent and divalent, respectively, via XANES measurements. Electrochemical charge/discharge studies showed that the highest first discharge capacity of 224 mAh/g was obtained in composition of x = 0.5 at a 0.2 C rate. The oxidation state of the Co and Ni ions in the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 changed to higher oxidation states, but that of the Mn ions did not change. # 2008 Elsevier Ltd.
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[36.85, 431.43, 408.25, 6.95]Keywords: A. Inorganic compounds; B. Chemical synthesis; C. XAFS (EXAFS and XANES); D. Electrochemical propertiesKeywords: A. Inorganic compounds; B. Chemical synthesis; C. XAFS (EXAFS and XANES); D. Electrochemical properties
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[36.85, 473.51, 66.61, 8.78]1. Introduction1. Introduction
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[41.39, 633.6, 172.87, 16.93]* Corresponding author. Fax: +82 42 869 8650. E-mail address: antiserra@kaist.ac.kr (G.-Y. Kim).* Corresponding author. Fax: +82 42 869 8650. E-mail address: antiserra@kaist.ac.kr (G.-Y. Kim).
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[36.85, 665.33, 240.11, 17.06]0025-5408/$ -see front matter # 2008 Elsevier Ltd. All rights reserved. doi:10.1016/j.materresbull.2008.01.0110025-5408/$ -see front matter # 2008 Elsevier Ltd. All rights reserved. doi:10.1016/j.materresbull.2008.01.011
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[41.16, 45.41, 15.94, 6.95]35443544
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[164.3, 45.41, 219.98, 6.95]G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552
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[41.16, 63.78, 274.88, 16.93]Table 1 c/a values, lattice parameters and theoretical capacity of layered oxide compositionsTable 1 c/a values, lattice parameters and theoretical capacity of layered oxide compositions
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[41.16, 363.19, 70.77, 8.78]2. Experimental2. Experimental
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[41.16, 638.15, 109.24, 8.78]3. Results and discussion3. Results and discussion
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[159.99, 45.41, 219.98, 6.95]G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552
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[133.11, 243.89, 273.72, 7.7]Fig. 1. XRD patterns of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2.Fig. 1. XRD patterns of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2.
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[164.3, 45.41, 219.98, 6.95]G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552
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[48.59, 562.05, 451.38, 7.7]Fig. 2. SEM images of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2. x = (a) 1.0, (b) 0.9, (c) 0.7, (d) 0.5, (e) 0.3 and (f) 0.1.Fig. 2. SEM images of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2. x = (a) 1.0, (b) 0.9, (c) 0.7, (d) 0.5, (e) 0.3 and (f) 0.1.
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[159.99, 45.41, 219.98, 6.95]G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552
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[108.17, 434.43, 323.61, 7.75]Fig. 3. First charge/discharge curves of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2.Fig. 3. First charge/discharge curves of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2.
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[164.3, 45.41, 219.98, 6.95]G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552
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[41.16, 446.26, 466.28, 27.33]Fig. 4. (a) Electrochemical properties of mixed compounds ofLi2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2: ( & ) charge capacity and ( * ) discharge capacity. (b) Electrochemical properties of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2: ( & ) capacity retention and ( * ) initial capacity loss.Fig. 4. (a) Electrochemical properties of mixed compounds ofLi2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2: ( & ) charge capacity and ( * ) discharge capacity. (b) Electrochemical properties of mixed compounds of Li2MnO3 and Li[Ni1/3Co1/3Mn1/3]O2: ( & ) capacity retention and ( * ) initial capacity loss.
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[159.99, 45.41, 219.98, 6.95]G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552
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[123.87, 248.31, 292.28, 7.75]Fig. 5. Cycle performance of the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound after fifty cycles.Fig. 5. Cycle performance of the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound after fifty cycles.
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[55.39, 464.42, 429.17, 7.7]Fig. 6. Cyclic voltammograms of the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound. Scan rate is 0.1 mV/s. The voltage range is 2.0 -4.8 V.Fig. 6. Cyclic voltammograms of the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound. Scan rate is 0.1 mV/s. The voltage range is 2.0 -4.8 V.
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[82.94, 675.32, 374.11, 6.95]Fig. 7. Voltage profile of the cell during two cycles. Representative scans of XANES measurements are indicated.Fig. 7. Voltage profile of the cell during two cycles. Representative scans of XANES measurements are indicated.
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[164.3, 45.41, 219.98, 6.95]G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552
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[41.16, 625.94, 466.25, 26.91]Fig. 8. (a) Mn K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during the first charge process. (b) Co K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during the first charge process. (c) Ni K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during the first charge process.Fig. 8. (a) Mn K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during the first charge process. (b) Co K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during the first charge process. (c) Ni K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during the first charge process.
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[159.99, 45.41, 219.98, 6.95]G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552
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[36.85, 613.58, 466.26, 17.68]Fig. 9. (a) Mn K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during 2 cycles. (b) Co K-edge XANES spectra for the Li[Li1/ 6Mn1/2Ni1/6Co1/6]O2 compound during 2 cycles. (c) Ni K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during 2 cycles.Fig. 9. (a) Mn K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during 2 cycles. (b) Co K-edge XANES spectra for the Li[Li1/ 6Mn1/2Ni1/6Co1/6]O2 compound during 2 cycles. (c) Ni K-edge XANES spectra for the Li[Li1/6Mn1/2Ni1/6Co1/6]O2 compound during 2 cycles.
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[41.16, 45.4, 15.94, 6.95]35523552
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[164.3, 45.4, 219.98, 6.95]G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552G.-Y. Kim et al. / Materials Research Bulletin 43 (2008) 3543 -3552
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[41.16, 243.68, 63.93, 8.78]4. Conclusions4. Conclusions
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[41.16, 387.11, 78.62, 8.78]AcknowledgementAcknowledgement
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[41.16, 434.96, 46.53, 8.78]ReferencesReferences
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