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·32·                              精细化工   FINE CHEMICALS                                 第 39 卷

                 2019, 47(6): 155-158.                             progress  on  flame retardant polymer/LDHs nanocomposite[J].
            [3]   JANG J, IM H G, LIM D S, et al. Preparation of high-performance   Plastics (塑料), 2021, 50(1): 145-150.
                 transparent glass-fiber reinforced composites based on refractive   [22]  CHEN J (陈君), ZHANG Q Y (张勤勇), SONG Y W (宋影伟), et al.
                 index-tunable epoxy-functionalized  siloxane hybrid  matrix[J].   Research progress of hydrotalcite-like compounds and their
                 Composites Science and Technology, 2021, 201: 108527.     application in corrosion protection[J]. Journal of Xihua  University
            [4]   ZHOU  K K, DAI  K, LIU  C T,  et al. Flexible conductive polymer   (Natural Science Edition)  (西华大学学报:  自然科学版), 2014,
                 composites for smart wearable strain sensors[J]. SmartMat, 2020,   33(5): 64-69.
                 1(1): e1010.                                  [23]  YUE  X P,  LI C F,  NI Y  H, et al. Flame retardant nanocomposites
            [5]   LI F F (李丰丰), LIU Y J (刘彦菊), LENG J S (冷劲松). Progress of   based on 2D layered nanomaterials: A review[J]. Journal of Materials
                 shape memory  polymer and  their composites  in aerospace   Science, 2019, 54(20): 13070-13105.
                 application[J].  Journal of Astronautics (宇航学报), 2020, 41(6):   [24]  MISHRA G, DASH B, PANDEY S. Layered double hydroxides: A
                 697-706.                                          brief review from fundamentals to application as evolving biomaterials[J].
            [6]   CHONG N S, ABDULRAMONI S, PATTERSON D, et al. Releases   Applied Clay Science, 2018, 153: 172-186.
                 of fire-derived contaminants from polymer pipes made of polyvinyl   [25]  YI H,  LIU S Y, LAI C,  et al. Recent advance of transition-metal-
                 chloride[J]. Toxics, 2019, 7(4): 7040057.         based layered double hydroxide nanosheets:  Synthesis, properties,
            [7]   LIU H, WU H J, SONG Q Y,et al. Core/shell structure magnesium   modification, and electrocatalytic applications[J]. Advanced Energy
                 hydroxide@polyphosphate metal salt: Preparation and its performance   Materials, 2021, 11(14): 2002863.
                 on the flame retardancy for ethylene vinyl acetate  copolymer[J].   [26]  CONTEROSTIO E, GIANOTTI V, PALIN L, et al. Facile preparation
                 Journal of Thermal Analysis and Calorimetry, 2020, 141(4): 1341-1350.   methods of hydrotalcite layered  materials and  their  structural
            [8]   BENJAMIN T,  BIN Y, BIN F. Advances in flame retardant poly   characterization by combined techniques[J]. Inorganica Chimica Acta,
                 (lactic acid)[J]. Polymers, 2018, 10(8): 876.     2018, 470: 36-50.
            [9]   VAHABI H, RASTIN H, MOVAHEDIFAR E, et al. Flame retardancy   [27]  THEISS F L, AYOKO G A, FROST R L. Synthesis of layered double
                 of bio-based polyurethanes: Opportunities and challenges[J]. Polymers,   hydroxides containing Mg , Zn , Ca  and Al   layer cations by
                                                                                                 3+
                                                                                           2+
                                                                                   2+
                                                                                       2+
                 2020, 12(6): 1234.                                co-precipitation methods—A review[J]. Applied Surface Science,
            [10]  CAI T M, WANG J, ZHANG C,  et al. Halogen and halogen-free   2016, 383: 200-213.
                 flame retarded biologically-based polyamide with markedly suppressed   [28]  KALALI E N, MONTES  A,  WANG X,  et al.  Effect of phytic
                 smoke and toxic gases releases[J]. Composites Part B: Engineering,
                 2019, 184: 107737.                                acid-modified layered double hydroxide on flammability and
            [11]  LI S,  YAN H X, FENG S  Y, et al. Phosphorus-containing  flame-   mechanical properties of intumescent flame retardant polypropylene
                                                                   system[J]. Fire and Materials, 2018, 42(2): 213-220.
                 retardant bismaleimide resin with high mechanical properties[J].
                 Polymer Bulletin, 2016, 73(12): 3547-3557.    [29]  BAIG N, SAJID M. Applications of layered double hydroxides based
            [12]  SAG J,  KUKLA  P, GOEDDERZ D, et al. Synthesis of novel   electrochemical sensors for determination of environmental pollutants:
                 polymeric acrylate-based flame retardants containing two phosphorus   A review[J]. Trends in Environmental Analytical Chemistry, 2017, 16:
                 groups in different chemical environments and their influence on the   1-15.
                 flammability of poly(lactic acid)[J]. Polymers, 2020, 12(4): 778.   [30]  MALLAKPOUR S, HATAMI M, HUSSAIN C M. Recent innovations
            [13]  HU Z, ZHONG  Z Q, GONG X D. Flame retardancy, thermal   in functionalized layered double hydroxides: Fabrication, characterization,
                 properties, and combustion behaviors of intumescent flame-retardant   and industrial applications[J]. Advances in Colloid and Interface
                 polypropylene containing (poly) piperazine pyrophosphate and   Science, 2020, 283: 102216.
                 melamine polyphosphate[J]. Polymers  for Advanced  Technologies,   [31]  GUO Y W, ZHU Z L, QIU Y L, et al. Enhanced adsorption of acid
                 2020, 31(11): 2701-2710.                          brown 14 dye on  calcined Mg/Fe layered double hydroxide with
            [14]  QIAN Y, ZHOU S J, CHEN X L. Synergistic flame retardant effect   memory effect[J]. Chemical Engineering Journal, 2013, 219: 69-77.
                 between nano-silicon  dioxide and layered double hydroxides in   [32]  KOSTURA B, KOVANDA F, VALASKOVA M, et al. Rehydration
                 ethylene vinyl acetate  composites[J]. Journal of Thermoplastic   of calcined Mg-Al hydrotalcite in acidified chloride-containing
                 Composite Materials, 2018, 31(10): 1295-1309.     aqueous solution[J].  Collection of Czechoslovak Chemical
            [15]  JIAN J, ZHANG  Y, FANG  Z P,  et al. Core-shell flame retardant/   Communications, 2007, 72(9): 1284-1294.
                 graphene oxide hybrid: A self-assembly strategy towards reducing   [33]  ROCHA J, DELARCO M, RIVES V, et al. Reconstruction of layered
                 fire hazard and improving toughness of polylactic acid[J]. Composites   double hydroxides from calcined precursors: A powder XRD and 27
                 Science & Technology, 2018, 165: 161-167.         Al MAS NMR study[J]. Journal of Materials Chemistry, 1999, 9(10):
            [16]  SHANG S C (尚松川), YANG B J (杨保俊), ZHANG R C (张睿辰),   2499-2503.
                 et al. Sb 2O 3-ZnMgAl preparation of Sb 2O 3-ZnMgAl-LDHs hydrotalcite   [34]  XU S, LI S Y, ZHANG M, et al. Fabrication of green alginate-based
                 and its assiting flame retardant effects on soft polyvinyl chloride[J].   and layered double hydroxides flame retardant for enhancing the fire
                 Acta Materiae  Compositae Sinica (复合材料学报), 2017, 34(8):   retardancy properties of  polypropylene[J]. Carbohydrate  Polymers,
                 1667-1673.                                        2020, 234: 115891.
            [17]  LIN S L (林绍铃), LUO Z H (罗祖获), CHEN D Q (陈丹青), et al.   [35]  REN X M (任秀梅), ZHOU A J (周爱军), SUN H L (孙贺雷), et al.
                 Research progress of halogen-free flame retardant rigid polyurethane   Preparation of magnesium aluminum hydrotalcite with orderly porou
                 foam[J]. Materials Reports (材料导报), 2021, 35(1): 1196-1202.   structure by colloidal crystal template[J]. Journal of Wuhan Institute
            [18]  HUA Y T (滑亚婷), DU C G (杜春贵), YAO X L (姚潇翎), et al.   of Technology (武汉工程大学学报), 2018, 40(1): 52-56.
                 Research progress of ionic modification  of  hydrotalcite flame   [36]  ZHAO P P, DENG C,  ZHAO Z  Y,  et al. Nanoflake-constructed
                 retardant[J]. Chemistry Bulletin (化学通报), 2019, 82(4): 316-322.   supramolecular hierarchical porous microspheres for fire-safety and
            [19]  WANG X K (王晓卡),PEI G B (裴广斌),WANG Q (王茜), et al.   highly efficient thermal energy storage[J]. ACS Applied Materials &
                 Research progress of LDHs and their flame retarding properties[J].   Interfaces, 2020, 12(25): 28700-28710.
                 Shanghai Plastics (上海塑料), 2019, (2): 1-4.     [37]  ZOU Y (邹瑜). Characteristic analysis of layered double hydroxides
            [20]  ZHU M (朱猛), ZHU J Z (朱嘉智), SHI J Y (时君友), et al. Study   functional materials and its flame retardant application[J].Bulletin of
                 on flame-retardant poplar veneer modified by polyvinyl alcohol   the Chinese Ceramic Society (硅酸盐通报), 2020, 39(12): 4034-4042.
                 phosphate intercalated hydrotalcite[J]. Chinese Journal  of Wood   [38]  QIAN Y, QIAO P, LI L, et al. Hydrothermal synthesis of lanthanum-
                 Science and Technology (木材科学与技术), 2021, 35(3): 52-58.   doped MgAl-layered double hydroxide/graphene oxide hybrid and its
            [21] GAO Y (高野), GU X Y (谷晓昱), LI H F (李洪飞), et al. Research   application as flame retardant for thermoplastic polyurethane[J].
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