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1

Zeng, Lin-Chao, Wei-Han Li, Yu Jiang y Yan Yu. "Recent progress in Li–S and Li–Se batteries". Rare Metals 36, n.º 5 (15 de marzo de 2017): 339–64. http://dx.doi.org/10.1007/s12598-017-0891-z.

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2

Kim, Haegyeom, Hee-Dae Lim, Jinsoo Kim y Kisuk Kang. "Graphene for advanced Li/S and Li/air batteries". J. Mater. Chem. A 2, n.º 1 (2014): 33–47. http://dx.doi.org/10.1039/c3ta12522j.

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3

Heunpil Oh. "Li Gou′s Historical Lyrics". Journal of Chinese Language and Literature ll, n.º 73 (febrero de 2016): 139–60. http://dx.doi.org/10.26586/chls.2016..73.006.

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4

Abraham, K. M., D. M. Pasquariello y G. F. McAndrews. "Li / MoSe3 S Secondary Battery". Journal of The Electrochemical Society 134, n.º 11 (1 de noviembre de 1987): 2661–65. http://dx.doi.org/10.1149/1.2100268.

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5

Newsom, Brent. "Transoceanic Lights by S. Li". Pleiades: Literature in Context 36, n.º 1S (2016): 35–37. http://dx.doi.org/10.1353/plc.2016.0021.

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6

Ji, Xiulei y Linda F. Nazar. "Advances in Li–S batteries". Journal of Materials Chemistry 20, n.º 44 (2010): 9821. http://dx.doi.org/10.1039/b925751a.

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7

Younesi, Reza, Gabriel M. Veith, Patrik Johansson, Kristina Edström y Tejs Vegge. "Lithium salts for advanced lithium batteries: Li–metal, Li–O2, and Li–S". Energy & Environmental Science 8, n.º 7 (2015): 1905–22. http://dx.doi.org/10.1039/c5ee01215e.

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8

Bai, Zilong, Fengyuan Li y Shuqiang Li. "Ten new species of the spider genus Sinoderces Li & Li, 2017 from China, Laos and Thailand (Araneae, Psilodercidae)". ZooKeys 886 (5 de noviembre de 2019): 79–111. http://dx.doi.org/10.3897/zookeys.886.39212.

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Ten new species of the spider family Psilodercidae Machado, 1951 are described from tropical East Asia, including five species found in China: Sinoderces luohanensis Li & Li, sp. nov. (♂♀), S. xueae Li & Li, sp. nov. (♂♀), S. taichi Li & Li, sp. nov. (♂♀), S. wenshanensis Li & Li, sp. nov. (♂♀), S. aiensis Li & Li, sp. nov. (♂♀); three are from Laos: S. khanensis Li & Li, sp. nov. (♂♀), S. phathaoensis Li & Li, sp. nov. (♂♀), S. kieoensis Li & Li, sp. nov. (♂); and the rest are from Thailand: S. saraburiensis Li & Li, sp. nov. (♂), S. dewaroopensis Li & Li, sp. nov. (♂♀). Types of all new species are deposited in the Institute of Zoology, Chinese Academy of Sciences in Beijing, China.
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9

Luo, Qian, Ruixue Tian, Aimin Wu, Xufeng Dong, Xiaozhe Jin, Shuyu Zhou y Hao Huang. "In-built durable Li–S counterparts from Li–TiS2 batteries". Materials Today Energy 17 (septiembre de 2020): 100439. http://dx.doi.org/10.1016/j.mtener.2020.100439.

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10

Bruce, Peter G., Stefan A. Freunberger, Laurence J. Hardwick y Jean-Marie Tarascon. "Li–O2 and Li–S batteries with high energy storage". Nature Materials 11, n.º 1 (15 de diciembre de 2011): 19–29. http://dx.doi.org/10.1038/nmat3191.

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11

Gao, Yuan, Qianyi Guo, Qiang Zhang, Yi Cui y Zijian Zheng. "Li–S Batteries: Fibrous Materials for Flexible Li–S Battery (Adv. Energy Mater. 15/2021)". Advanced Energy Materials 11, n.º 15 (abril de 2021): 2170058. http://dx.doi.org/10.1002/aenm.202170058.

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12

LI, HOUHUN, ZHIWEI ZHANG y SERGEY YU SINEV. "Review of the genus Scaeosopha Meyrick, 1914 (Lepidoptera, Cosmopterigidae, Scaeosophinae) in the world, with descriptions of sixteen new species". Zootaxa 3322, n.º 1 (23 de mayo de 2012): 1. http://dx.doi.org/10.11646/zootaxa.3322.1.1.

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The genus Scaeosopha Meyrick is reviewed on a worldwide basis. A total of 26 species are treated, which are divided intotwo species groups except S. atrinervis Meyrick, 1931, the percnaula-group and the mitescens-group. Sixteen new speciesare described: S. betrokensis Sinev et Li sp. nov., S. erecta Li et Zhang sp. nov., S. hongkongensis Li et Zhang sp. nov.,S. minuta Sinev et Li sp. nov., S. nullivalvella Li et Zhang sp. nov., S. sabahensis Sinev et Li sp. nov., S. spinivalvata Liet Zhang sp. nov., S. tuberculata Li et Zhang sp. nov., S. victoriensis Sinev et Li sp. nov., S. convexa Li et Zhang sp. nov.,S. dentivalvula Li et Zhang sp. nov., S. gibbosa Li et Zhang sp. nov., S. grandannulata Li et Zhang sp. nov., S. nigrimar-ginata Li et Zhang sp. nov., S. rarimaculata Li et Zhang sp. nov. and S. trigonia Li et Zhang sp. nov. One new synonymis established: Scaeosopha stagnigera Meyrick, 1932 syn. nov. (= Scaeosopha percnaula Meyrick, 1914), and one newcombination is proposed: Scaeosopha triocellata (Stainton, 1859) comb. nov. The previously unknown females of S.chionoscia Meyrick, 1933, S. sinevi Ponomarenko et Park, 1997 and S. sattleri Li, 2005 are described for the first time.Photographs of the adults and the genitalia of the new species as well as several of the described species are provided, along with a key for the identification of the known species and two maps to show the distribution of these species.
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13

WEN, CHAO, FANGYING CHEN y WU DAI. "A review of the leafhopper genus Scaphoideus (Hemiptera: Cicadellidae: Deltocephalinae) from Guangxi of China, with description of one new species". Zootaxa 4247, n.º 4 (28 de marzo de 2017): 351. http://dx.doi.org/10.11646/zootaxa.4247.4.1.

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Guangxi Zhuang Autonomous Region is one of the China's richest regions in terms of biodiversity. Previously, only five species of the genus Scaphoideus Uhler have been reported from Guangxi. Here fifteen species of Scaphoideus from Guangxi, including one new species, are recognized: S. exsertus Li, S. albovittatus Matsumura, S. apicalis Li, S. bilineus Li, S. yuani Chen, Dai and Zhang, S. dentaedeagus Li and Wang, S. festivus Matsumura, S. kumamotonis Matsumura, S. maculatus Li, S. nigrigenatus Li, S. nigrisignus Li, S. palingus Li and Dai, S. yingjiangensis Wang and Li, S. zhoui Li and Xing and S. proxaprocessus sp. nov. Two new synonyms are revealed, Scaphoideus pristiophorus Kamitani and Hayashi, 2013 syn. nov., a junior synonym of Scaphoideus apicalis Li, 1999, and Scaphoideus spiculatus Viraktamath and Mohan, June 2004 syn. nov., a junior synonym of Scaphoideus yingjiangensis Wang and Li, March 2004. The new species is described, and photographs of external habitus and male genitalia of all the species treated are also given along with a key to the species of the region.
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14

Sharon, Daniel, Michael Salama, Ran Attias y Doron Aurbach. "Electrolyte Solutions for “Beyond Li-Ion Batteries”: Li-S, Li-O2, and Mg Batteries". Electrochemical Society Interface 28, n.º 2 (2019): 71–77. http://dx.doi.org/10.1149/2.f07192if.

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15

Agubra, Victor A., Luis Zuniga, David Flores, Jahaziel Villareal y Mataz Alcoutlabi. "Composite Nanofibers as Advanced Materials for Li-ion, Li-O2 and Li-S Batteries". Electrochimica Acta 192 (febrero de 2016): 529–50. http://dx.doi.org/10.1016/j.electacta.2016.02.012.

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16

Yang, Xiaofei, Xuejie Gao, Qian Sun, Sara Panahian Jand, Ying Yu, Yang Zhao, Xia Li et al. "Promoting the Transformation of Li 2 S 2 to Li 2 S: Significantly Increasing Utilization of Active Materials for High‐Sulfur‐Loading Li–S Batteries". Advanced Materials 31, n.º 25 (7 de mayo de 2019): 1901220. http://dx.doi.org/10.1002/adma.201901220.

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17

Seo, Jeongwook, Shrihari Sankarasubramanian, Chi-Su Kim, Pierre Hovington, Jai Prakash y Karim Zaghib. "Thermal characterization of Li/sulfur, Li/ S–LiFePO4 and Li/S–LiV3O8 cells using Isothermal Micro-Calorimetry and Accelerating Rate Calorimetry". Journal of Power Sources 289 (septiembre de 2015): 1–7. http://dx.doi.org/10.1016/j.jpowsour.2015.04.149.

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18

Li, Jun, Cornelis van Achterberg, Min-Lin Zheng y Jia-Hua Chen. "Revision of Streblocera Westwood (Hymenoptera, Braconidae, Euphorinae) from China, with the description of seven new species". ZooKeys 1044 (16 de junio de 2021): 729–82. http://dx.doi.org/10.3897/zookeys.1044.59979.

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The Chinese fauna of the euphorine genus Streblocera Westwood, 1833 (Hymenoptera, Braconidae) is revised. Seven new species from China are described and illustrated: Streblocera (Eutanycerus) carinifera Li, Chen and van Achterberg, sp. nov., S. (E.) laterostriata Li, Chen and van Achterberg, sp. nov., S. (E.) uncifera Li, Chen and van Achterberg, sp. nov., S. (S.) interrupta Li, Chen and van Achterberg, sp. nov., S. (S.) stigenbergae Li, Chen and van Achterberg, sp. nov., S. (S.) trullifera Li, Chen and van Achterberg, sp. nov., and S. (S.) zoroi Li, Chen and van Achterberg, sp. nov. An identification key to the females of Streblocera from China is provided.
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19

Raghavan, V. "Fe-Li-S (Iron-Lithium-Sulfur)". Journal of Phase Equilibria 19, n.º 3 (junio de 1998): 271. http://dx.doi.org/10.1361/105497198770342346.

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20

Okamoto, H. "The Li-S (lithium-sulfur) system". Journal of Phase Equilibria 16, n.º 1 (febrero de 1995): 94–97. http://dx.doi.org/10.1007/bf02646258.

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21

Sealy, Cordelia. "Nanosheet electrocatalyst accelerates Li-S batteries". Nano Today 40 (octubre de 2021): 101278. http://dx.doi.org/10.1016/j.nantod.2021.101278.

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22

Xu, Kangli, Xiaojing Liu, Jianwen Liang, Jinyan Cai, Kailong Zhang, Yue Lu, Xun Wu et al. "Manipulating the Redox Kinetics of Li–S Chemistry by Tellurium Doping for Improved Li–S Batteries". ACS Energy Letters 3, n.º 2 (23 de enero de 2018): 420–27. http://dx.doi.org/10.1021/acsenergylett.7b01249.

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23

Kim, Se‐Hee, Jung‐Hui Kim, Sung‐Ju Cho y Sang‐Young Lee. "Li–S Batteries: All‐Solid‐State Printed Bipolar Li–S Batteries (Adv. Energy Mater. 40/2019)". Advanced Energy Materials 9, n.º 40 (octubre de 2019): 1970154. http://dx.doi.org/10.1002/aenm.201970154.

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24

Bruce, Peter G., Stefan A. Freunberger, Laurence J. Hardwick y Jean-Marie Tarascon. "Erratum: Li–O2 and Li–S batteries with high energy storage". Nature Materials 11, n.º 2 (15 de diciembre de 2011): 172. http://dx.doi.org/10.1038/nmat3237.

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25

Zhang, Wenhua, Dan Qiao, Jiaxin Pan, Yuliang Cao, Hanxi Yang y Xinping Ai. "A Li+-conductive microporous carbon–sulfur composite for Li-S batteries". Electrochimica Acta 87 (enero de 2013): 497–502. http://dx.doi.org/10.1016/j.electacta.2012.09.086.

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26

Li, Ya, Yucheng Lin y Shuqiang Li. "A review of Crassignatha (Araneae, Symphytognathidae)". ZooKeys 988 (6 de noviembre de 2020): 63–128. http://dx.doi.org/10.3897/zookeys.988.56188.

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Crassignatha Wunderlich, 1995 is redefined to include species with six eyes in three diads, chelicerae fused only near the base, sculpturing on the carapace, one or two clasping spurs on tibia II, a bilateral scutum of the male abdomen, and globular spermathecae and adjacent copulatory openings in the female. A key and distribution map are provided for 24 Crassignatha species in this paper. Diagnoses and illustrated photographs are provided for 22 species from China, Malaysia, Thailand, and Vietnam. Thirteen species are described and documented as new to science: C. baihua Y. Lin & S. Li, sp. nov. (♂♀), C. bangbie Y. Lin & S. Li, sp. nov. (♀), C. changyan Y. Lin & S. Li, sp. nov. (♀), C. dongnai Y. Lin & S. Li, sp. nov. (♀), C. gucheng Y. Lin & S. Li, sp. nov. (♂♀), C. mengla Y. Lin & S. Li, sp. nov. (♂♀), C. nantou Y. Lin & S. Li, sp. nov. (♂♀), C. nasalis Y. Lin & S. Li, sp. nov. (♂♀), C. rostriformis Y. Lin & S. Li, sp. nov. (♂♀), C. shunani Y. Lin & S. Li, sp. nov. (♂♀), C. si Y. Lin & S. Li, sp. nov. (♂♀), C. thamphra Y. Lin & S. Li, sp. nov. (♀), and C. xichou Y. Lin & S. Li, sp. nov. (♀). Three new combinations are proposed: C. bicorniventris (Lin & Li, 2009), comb. nov., C. quadriventris (Lin & Li, 2009), comb. nov., and C. shiluensis (Lin & Li, 2009), comb. nov. are transferred from Patu Marples, 1951. DNA barcodes and genetic distances of seventeen species are obtained to confirm correct identification. Types of seven known Chinese Crassignatha species are re-examined, and the taxonomic placement of C. longtou Miller, Griswold & Yin, 2009 may be incorrect based on morphological and molecular data.
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27

Holzmann, T., L. M. Schoop, M. N. Ali, I. Moudrakovski, G. Gregori, J. Maier, R. J. Cava y B. V. Lotsch. "Li0.6[Li0.2Sn0.8S2] – a layered lithium superionic conductor". Energy & Environmental Science 9, n.º 8 (2016): 2578–85. http://dx.doi.org/10.1039/c6ee00633g.

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Implementing vacant sites enhances the Li mobility in lithium tin sulfide enormously as demonstrated by the increase in Li conductivity from 10−5 S cm−1 in Li1.0[Li0.33Sn0.67S2] to 10−2 S cm−1 in Li0.6[Li0.2Sn0.8S2].
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28

Chung, Sheng‐Heng y Arumugam Manthiram. "A Li 2 S‐TiS 2 ‐Electrolyte Composite for Stable Li 2 S‐Based Lithium–Sulfur Batteries". Advanced Energy Materials 9, n.º 30 (26 de junio de 2019): 1901397. http://dx.doi.org/10.1002/aenm.201901397.

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29

Yang, Guochun, Shaoqing Shi, Jinghai Yang y Yanming Ma. "Insight into the role of Li2S2 in Li–S batteries: a first-principles study". Journal of Materials Chemistry A 3, n.º 16 (2015): 8865–69. http://dx.doi.org/10.1039/c5ta00499c.

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30

LI, BING, ZHE ZHAO, CHUNTIAN ZHANG y SHUQIANG LI. "Troglocoelotes gen. n., a new genus of Coelotinae spiders (Araneae, Agelenidae) from caves in South China". Zootaxa 4554, n.º 1 (8 de febrero de 2019): 219. http://dx.doi.org/10.11646/zootaxa.4554.1.7.

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A new genus Troglocoelotes Z. Zhao & S. Li gen. n. from South China is described with the type species T. yumiganensis Z. Zhao & S. Li sp. n. (♂♀) and eight additional species: T. bailongensis Z. Zhao & S. Li sp. n. (♀), T. banmenensis Z. Zhao & S. Li sp. n. (♀), T. liangensis Z. Zhao & S. Li sp. n. (♂♀), T. nongchiensis Z. Zhao & S. Li sp. n. (♀), T. qixianensis Z. Zhao & S. Li sp. n. (♂♀), T. proximus (Chen, Zhu & Kim, 2008) comb. n. (♀), T. tortus (Chen, Zhu & Kim, 2008) comb. n. (♂♀) and T. yosiianus (Nishikawa, 1999) comb. n (♀). All species are cave dwellers and not found outside of caves. New combinations are all ex-Draconarius Ovtchinnikov, 1999. DNA barcodes are provided for all species.
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31

LI, BING, ZHE ZHAO, CHUNTIAN ZHANG y SHUQIANG LI. "Nuconarius gen. n. and Hengconarius gen. n., two new genera of Coelotinae (Araneae, Agelenidae) spiders from Southwest China". Zootaxa 4457, n.º 2 (8 de agosto de 2018): 237. http://dx.doi.org/10.11646/zootaxa.4457.2.2.

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Two new genera of Coelotinae F.O.Pickard-Cambridge, 1893 from Southwest China are described: Nuconarius Z. Zhao & S. Li gen. n. and Hengconarius Z. Zhao & S. Li gen. n. The type species of Nuconarius Z. Zhao & S. Li gen. n. is N. brevipatellatus Z. Zhao & S. Li sp. n. and two additional species also belong here: N. capitulatus (Wang, 2003) comb. n. and N. pseudocapitulatus (Wang, 2003) comb. n. The type species of Hengconarius Z. Zhao & S. Li gen. n. is H. exilis (Zhang, Zhu & Wang, 2005) comb. n. and this genus includes seven additional species: H. dedaensis Z. Zhao & S. Li sp. n., H. falcatus (Xu & Li, 2006) comb. n., H. incertus (Wang, 2003) comb. n., H. latusincertus (Wang, Griswold & Miller, 2010) comb. n., H. longipalpus Z. Zhao & S. Li sp. n., H. longpuensis Z. Zhao & S. Li sp. n. and H. pseudobrunneus (Wang, 2003) comb. n. All species are from Southwest China and their distributions are mapped. New combinations are all ex-Draconarius Ovtchinnikov, 1999. The male of N. capitulatus is matched correctly for the first time and the DNA barcodes of all species are documented.
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32

Wu, Meifen, Zhaoyin Wen, Jun Jin y Bobba V. R. Chowdari. "Trimethylsilyl Chloride-Modified Li Anode for Enhanced Performance of Li–S Cells". ACS Applied Materials & Interfaces 8, n.º 25 (20 de junio de 2016): 16386–95. http://dx.doi.org/10.1021/acsami.6b02612.

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33

Liu, Zhixiao, Dion Hubble, Perla B. Balbuena y Partha P. Mukherjee. "Adsorption of insoluble polysulfides Li2Sx (x = 1, 2) on Li2S surfaces". Physical Chemistry Chemical Physics 17, n.º 14 (2015): 9032–39. http://dx.doi.org/10.1039/c4cp06118g.

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34

Li, Bing, Zhe Zhao, Haifeng Chen, Zhiyan Wu, Chuntian Zhang y Shuqiang Li. "Guilotes, a new genus of Coelotinae spiders from Guangxi Zhuang Autonomous Region, China (Araneae, Agelenidae)". ZooKeys 802 (4 de diciembre de 2018): 1–17. http://dx.doi.org/10.3897/zookeys.802.29913.

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A new genus of the subfamily Coelotinae F.O. Pickard-Cambridge, 1893, Guilotes Z. Zhao & S. Li, gen. n. from China is described, as well as four new species: G.ludiensis Z. Zhao & S. Li, sp. n. (♂♀, type species), G.qingshitanensis Z. Zhao & S. Li, sp. n. (♂♀), G.xingpingensis Z. Zhao & S. Li, sp. n. (♂♀) and G.yandongensis Z. Zhao & S. Li, sp. n. (♀). The DNA barcodes of all species are documented for future use.
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35

Fan, Qianqian, Baohua Li, Yubing Si y Yongzhu Fu. "Lowering the charge overpotential of Li2S via the inductive effect of phenyl diselenide in Li–S batteries". Chemical Communications 55, n.º 53 (2019): 7655–58. http://dx.doi.org/10.1039/c8cc09565e.

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We find that phenyl diselenide can lower the charge overpotential of Li2S via an inductive effect. The attraction between Se and Li weakens the Li–S bonds and facilitates the oxidation of Li2S in lithium batteries.
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36

Wang, Ziyi, Wei Liang y Shuqiang Li. "Five new Sinopoda species (Araneae, Sparassidae) from China and Thailand". ZooKeys 1012 (26 de enero de 2021): 1–19. http://dx.doi.org/10.3897/zookeys.1012.59854.

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Five new species of the huntsman spider genus Sinopoda Jäger, 1999 are described: S. hongruii Wang & Li, sp. nov. (♂♀, forest in Anhui, China), S. jiangzhou Wang & Li, sp. nov. (♂♀, cave in Guangxi, China), S. saiyok Wang & Li, sp. nov. (♀, cave in Kanchanaburi, Thailand), S. yanjin Wang & Li, sp. nov. (♀, forest in Yunnan, China), and S. yanzi Wang & Li, sp. nov. (♂♀, cave in Hunan, China). A distribution map of the new species is provided.
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37

HANTÁKOVÁ, JANA. "Li–Yorke sensitivity does not imply Li–Yorke chaos". Ergodic Theory and Dynamical Systems 39, n.º 11 (6 de marzo de 2018): 3066–74. http://dx.doi.org/10.1017/etds.2018.10.

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We construct an infinite-dimensional compact metric space $X$ , which is a closed subset of $\mathbb{S}\times \mathbb{H}$ , where $\mathbb{S}$ is the unit circle and $\mathbb{H}$ is the Hilbert cube, and a skew-product map $F$ acting on $X$ such that $(X,F)$ is Li–Yorke sensitive but possesses at most countable scrambled sets. This disproves the conjecture of Akin and Kolyada that Li–Yorke sensitivity implies Li–Yorke chaos [Akin and Kolyada. Li–Yorke sensitivity. Nonlinearity 16, (2003), 1421–1433].
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38

Liang, Zhicong, Xiaofeng Fan, David J. Singh y W. T. Zheng. "Adsorption and diffusion of Li with S on pristine and defected graphene". Physical Chemistry Chemical Physics 18, n.º 45 (2016): 31268–76. http://dx.doi.org/10.1039/c6cp04984b.

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39

Chen, Lin, Nancy L. Dietz Rago, Ira D. Bloom y Leon L. Shaw. "New insights into the electrode mechanism of lithium sulfur batteries via air-free post-test analysis". Chemical Communications 52, n.º 64 (2016): 9913–16. http://dx.doi.org/10.1039/c6cc04401h.

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40

Kumar, Rudra, Jie Liu, Jang-Yeon Hwang y Yang-Kook Sun. "Recent research trends in Li–S batteries". Journal of Materials Chemistry A 6, n.º 25 (2018): 11582–605. http://dx.doi.org/10.1039/c8ta01483c.

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41

Papageorgopoulos, A. C., M. Kamaratos y C. A. Papageorgopoulos. "Li on S covered Ni(100) surfaces". Surface Science 481, n.º 1-3 (junio de 2001): 143–49. http://dx.doi.org/10.1016/s0039-6028(01)01024-x.

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42

Zheng, Jing, Guangbin Ji, Xiulin Fan, Ji Chen, Qin Li, Haiyang Wang, Yong Yang, Kerry C. DeMella, Srinivasa R. Raghavan y Chunsheng Wang. "High‐Fluorinated Electrolytes for Li–S Batteries". Advanced Energy Materials 9, n.º 16 (27 de febrero de 2019): 1803774. http://dx.doi.org/10.1002/aenm.201803774.

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Park, J.-S., G.-B. Cho, H.-S. Ryu, J.-H. Ahn, H.-J. Ahn y K.-W. Kim. "Sulphur–carbon composites for Li/S batteries". Materials Technology 28, n.º 5 (septiembre de 2013): 270–75. http://dx.doi.org/10.1179/175355513x13621548393253.

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Mikhaylik, Yuriy V. y James R. Akridge. "Low Temperature Performance of Li/S Batteries". Journal of The Electrochemical Society 150, n.º 3 (2003): A306. http://dx.doi.org/10.1149/1.1545452.

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Poux, Tiphaine, Petr Novák y Sigita Trabesinger. "Pitfalls in Li–S Rate-Capability Evaluation". Journal of The Electrochemical Society 163, n.º 7 (2016): A1139—A1145. http://dx.doi.org/10.1149/2.0181607jes.

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Tsuzuki, Seiji, Tomoaki Kaneko, Keitaro Sodeyama, Yasuhiro Umebayashi, Wataru Shinoda, Shiro Seki, Kazuhide Ueno, Kaoru Dokko y Masayoshi Watanabe. "Thermodynamic aspect of sulfur, polysulfide anion and lithium polysulfide: plausible reaction path during discharge of lithium–sulfur battery". Physical Chemistry Chemical Physics 23, n.º 11 (2021): 6832–40. http://dx.doi.org/10.1039/d0cp04898d.

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Kusumoto, Takahiro, Tsuyoshi Maeda y Takahiro Wada. "Crystallographic, optical, and electronic properties of Li-doped CuIn(S,Se)2, (Cu,Li)In(S,Se)2". Japanese Journal of Applied Physics 57, n.º 8S3 (20 de julio de 2018): 08RC15. http://dx.doi.org/10.7567/jjap.57.08rc15.

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Gao, Guoping, Fan Zheng y Lin-Wang Wang. "Solid 3D Li–S Battery Design via Stacking 2D Conductive Microporous Coordination Polymers and Amorphous Li–S Layers". Chemistry of Materials 32, n.º 5 (6 de febrero de 2020): 1974–82. http://dx.doi.org/10.1021/acs.chemmater.9b04852.

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Fan, Shuang, Shaozhuan Huang, Mei Er Pam, Song Chen, Qingyun Wu, Junping Hu, Ye Wang et al. "Design Multifunctional Catalytic Interface: Toward Regulation of Polysulfide and Li 2 S Redox Conversion in Li–S Batteries". Small 15, n.º 51 (22 de noviembre de 2019): 1906132. http://dx.doi.org/10.1002/smll.201906132.

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Yi, Zonglin, Fangyuan Su, Guangyu Cui, Peide Han, Nan Dong y Chengmeng Chen. "Computational Insights into the Interaction between Li 2 S/Li 2 S 2 and Heteroatom‐Doped Graphene Materials". ChemistrySelect 4, n.º 43 (22 de noviembre de 2019): 12612–21. http://dx.doi.org/10.1002/slct.201903523.

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