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第 12 期                    王   超,等:  荧光聚氨酯固态锂电池电解质的制备及性能                                 ·2481·


            [3]   Kim  J  G,  Son  B,  Mukherjee  S,  et al.  A  review  of  lithium  and   distribution for lithium metal anode[J]. Angewandte Chemie, 2019,
                 non-lithium based solid state batteries[J]. Journal of Power Sources,   18: 5997-6001.
                 2015, 282: 299-322.                           [15]  Padilla  N  A,  Rea  M  T,  Foy  M,  et al.  Tracking  lithium  ions  via
            [4]   Li Y, Zhou W, Xin S, et al. Fluorine-doped antiperovskite electrolyte   widefield  fluorescence  microscopy  for  battery  diagnostics[J].  ACS
                 for  all-solid-state  lithium-ion  batteries[J].  Angewandte  Chemie   Sensors, 2017, 2(7): 903-908.
                 International Edition, 2016, 55(34): 9965-9968.   [16]  Chattopadhyay D K, Raju K. Structural engineering of polyurethane
            [5]   Dawson J A, Attari T S, Chen H, et al. Elucidating lithium-ion and   coatings  for  high  performance  applications[J].  Progress  in  Polymer
                 proton  dynamics  in  anti-perovskite  solid  electrolytes[J].  Energy  &   Science, 2007, 32(3): 352-418.
                 Environmental Science, 2018, 11(10): 2993-3002.   [17]  Shi P, Jiang Q, Zhao X, et al. Study of the one-photon and two-photon
            [6]   Fu K K, Gong Y, Hitz G T, et al. Three-dimensional bilayer garnet   properties  of  two  water-soluble  terpyridines  and  their  zinc
                 solid  electrolyte  based  high  energy  density  lithium  metal–sulfur   complexes[J]. Dalton Transactions, 2015, 44(17): 8041-8048.
                 batteries[J]. Energy & Environmental Science, 2017, 10(7): 1568-1575.   [18]  Xu K. Nonaqueous liquid electrolytes for lithium-based rechargeable
            [7]   Kato Y, Hori S, Saito T, et al. High-power all-solid-state batteries using   batteries[J]. Chemical Reviews, 2004, 104(10): 4303-4418.
                 sulfide superionicconductors[J]. Nature Energy, 2016, 1(4): 652-657.   [19]  Ramesh  S,  Liew  C  W.  Dielectric  and  FTIR  studies  on  blending  of
            [8]   Yu X, Bi Z, Zhao F, et al. Polysulfide-shuttle control in lithium-sulfur   [xPMMA-(1−x)  PVC] with LiTFSI[J]. Measurement, 2013, 46(5):
                 batteries with a chemically/electrochemically compatible NASICON-   1650-1656.
                 type  solid  electrolyte[J].  Advanced  Energy  Materials,  2016,  6(24):   [20]  Zhang Peng (张鹏), Zhang Youming (张有明), Lin Qi (林奇), et al.
                 392-403.                                          Design  principles  and  research  progress  of  metal  ion  responsive
            [9]   Nowak  S,  Berkemeier  F,  Schmitz  G.  Ultra-thin  LiPON  films-   fluorescence  sensor  molecules[J].  Chinese  Journal  of  Organic
                 fundamental properties and application in solid state thin film model   Chemistry (有机化学), 2014, 34(7): 1300-1321.
                 batteries[J]. Journal of Power Sources, 2015, 275: 144-150.   [21]  Ariyoshi K, Yamamoto H, Yamada Y. High dimensional stability of
            [10]  Appetecchi G B, Hassoun J, Scrosati B, et al. Hot-pressed, solvent-   LiCoMnO 4  as  positive  electrodes  operating  at  high  voltage  for
                 free, nanocomposite, PEO-based electrolyte membranes:  Ⅱ. All solid-   lithium-ion batteries with a long cycle life[J]. Electrochimica Acta,
                 state Li/LiFePO 4 polymer batteries[J]. Journal of Power Sources, 2003,   2018, 260: 498-503.
                 124(1): 246-253.                              [22]  Chen X, Huo L, Jiao C, et al. TG-FTIR characterization of volatile
            [11]  Chen L, Li Y, Li S P, et al. PEO/garnet composite electrolytes for   compounds  from  flame  retardant  polyurethane  foams  materials[J].
                 solid-state lithium batteries: From “ceramic-in-polymer” to “polymer-   Journal of Analytical and Applied Pyrolysis, 2013, 100: 186-191.
                 in-ceramic”[J]. Nano Energy, 2018, 46: 176-184.   [23]   Liu  L,  Yang  P,  Li  L,  et al.  Application  of  bis  (trifluoromethanesulfonyl)
            [12]  Sun  B,  Mindemark  J,  Edström  K,  et al.  Polycarbonate-based  solid   imide  lithium-N-methyl-N-butylpiperidinium-bis  trifluoromethanesulfonyl)
                 polymer electrolytes for Li-ion batteries[J]. Solid State Ionics, 2014,   imide- poly (vinylidenedifluoride-co-hexafluoropropylene) ionic liquid gel
                 262: 738-742.                                     polymer  electrolytes  in  Li/LiFePO 4  batteries  at  different  temperatures[J].
            [13]  Bao J,  Shi  G, Tao  C,  et al.  Polycarbonate-based  polyurethane  as  a   Electrochimica Acta, 2012, 85: 49-56.
                 polymer  electrolyte  matrix  for  all-solid-state  lithium  batteries[J].   [24]  Sigala C, Guyomard D, Verbaere A, et al. Positive electrode materials
                 Journal of Power Sources, 2018, 389: 84-92.       with high operating voltage for lithium batteries: LiCr yMn 2−yO 4 (0≤y
            [14]  Cheng X, Xian F, Hu Z, et al. Fluorescence probing of active lithium   ≤1)[J]. Solid State Ionics, 1995, 81(3/4): 167-170.


            (上接第 2466 页)                                       [14]  Zhang Zhen (张震). Preparation of monoacylglycerols catalyzed by
                                                                   solid base[D]. Guangzhou: Jinan University (暨南大学), 2014.
            [4]   Zheng  Liping  (郑丽萍),  Xia  Shuixin  (夏水鑫),  Lü  Xiuyang  (吕秀  [15]  Lu  Zhenmin  (陆振民),  Yuan  Xiaguang  (袁霞光).  Synthesis  of
                 阳),  et al.  Transesterification  of  glycerol  with  dimethyl  carbonate   monoglyceride by alcoholysis of fatty acid methyl ester with glycerol
                 over calcined Ca-Al hydrocalumite[J]. Chinese Journal of Catalysis   system[J]. Chinese Oiland Fats (中国油脂), 2003, 28(6): 49-51.
                 (催化学报), 2015, 36(10): 1759-1765.              [16]  Xiao  Guomin  (肖国民),  Zhou  Lu  (周路),  Hong  Mei  (洪梅),  et al.
            [5]   Liu P, Derchi M, Hensen E J M. Synthesis of glycerol carbonate by   Catalyst  for  synthesizing  glyceryl  monostearate  and  preparation
                 transesterification  of  glycerol  with  dimethyl  carbonate  over  MgAl   method and application thereof: CN103111297A[P]. 2013-05-22.
                 mixed oxide catalysts[J]. Applied Catalysis A: General, 2013, 467:   [17]  Dong Changting (董昌婷), Zeng Guifeng (曾桂凤), Zhou Yongsheng
                 124-131.                                          (周永生),  et al.  Preparation  of  monoglycerides  from  fatty  acid
            [6]   Han L, Wang T. Preparation of glycerol monostearate from glycerol
                 carbonate and stearic acid[J]. RSC Advances, 2016, 6: 34137-34145.     methyl ester and glycerol solution catalyzed by solid base catalyst[J].
            [7]   Tudorache  M,  Negoi  A,  Tudora  B,  et al.  Environmental-friendly   Fine Chemicals (精细化工), 2016, 33(2): 157-161.
                 strategy  to  biocatalytic  conversion  of  waste  glycerol  to  glycerol   [18]  Meng Yonglu (孟永禄). Study on preparation of biodiesel by Ca/Al
                 carbonate[J].  Applied  Catalysis  B:Environmental,  2014,  146:  274-   composite oxide catalys[D]. Tianjin: Tianjin University (天津大学),
                 278.                                              2010.
            [8]   Xu  R,  Gao  H  T,  Zhu  F,  et al.  SPE-UPLC-MS/MS  for  the   [19]  Zheng Huayan (郑华艳), Li Xiqian (李茜茜), Cui Liping (崔丽萍),
                 determination  of  phthalate  monoesters  in  rats  urine  and  its   et al.  Synthesis  of  biodiesel  from  rapeseed  oil  catalyzed  by  Ca/Al
                 application  to  study  the  effects  of  food  emulsifier  on  the   solid base[J]. Journal of Fuel Chemistry and Technology (燃料化学
                 bioavailability  of  priority  controlling  PAEs[J].  Journal  of
                 Chromatography B, 2016, 1012/1013: 97-105.        学报), 2012, 40(3): 331-336.
            [9]   Chen B Y,  Jia  X  Z, Miao  S,  et al.  Slowly  digestible  properties  of   [20]  Zhou Xi (周喜), Zhang Chao (张超). Method for synthesizing methyl
                 lotus  seed  starch-glycerine  monostearin  complexes  formed  by  high   ethyl   carbonate   catalyzed   by   calcined   hydrocalumite:
                 pressure homogenization[J]. Food Chemistry, 2018, 252: 115-125.    CN106588659A[P]. 2017-04-26.
            [10]  María F G,  Jose L  R,  Andrea  S,  et al.  Kinetics  of  the   [21]  Song Jiaqing (宋家庆), Xu Xiangyu (徐向宇), Lin Yanjun (林彦军),
                 transesterification of methyl palmitate and sucrose using surfactants   et al. Method for preparing nano layered composite metal hydroxide:
                 [J]. Chemical Engineering Journal, 2018, 347: 877-888.     CN10190581[P]. 2010-12-08.
            [11]  Hassan A, Mahmoud S, Mir M H. Facile and fast electrospinning of   [22]  Standardization Administration of the People's Republic of China (国
                 crystalline  ZnO  3D  interconnected  nanoporous  nanofibers  for   家标准化管理委员会). GB 15612—1995: Food Additives Distilled
                 ammonia  sensing  application[J].  Microsystem  Technologies,  2018,   glycerin monostearate[S]. Beijing: Standards Press of China (中国标
                 24(9): 3741-3749.
            [12]  Bhatt H, Rompicharla S V K, Komanduri N, et al. Development of   准出版社), 1995.
                 curcumin-loaded  solid  lipid  nanoparticles  utilizing  glyceryl   [23]  Wen  Xing  (文星),  Yang  Zhanhong  (杨占红).  Preparation  and
                 monostearate  as  single  lipid  using  QbD  approach:  Characterization   application of hydrocalumites in PVC[J]. Plastics Additives (塑料助
                 and evaluation of anticancer activity against human breast cancer cell   剂), 2015, (2): 27-32.
                 lines[J]. Current Drug Delivery, 2018, 15(9): 1271-1283.
            [13]  Wang  X  Z,  Wang  P  X,  Huang  C  L,  et al.  Hot-melt  sub-  and   [24]  Zhang  Kai  (张凯),  Jiang  Pingping  (蒋平平),  Liu  Hongliang  (刘洪
                                                                                       2–
                 outercoating combined with enteric aqueous coating to improve the   亮 ),  et al.  Preparation  of  CO 3   based  hydrocalumites  and  its
                 stability  of  aspirin  tablets[J].  Asian  Journal  of  Pharmaceutical   application  research  in  PVC[J].  China  Plastics  (中国塑料),  2016,
                 Sciences, 2016, 12(3): 266-278.                   30(9): 75-81.
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