Page 43 - 《精细化工》2020年第12期
P. 43
第 12 期 周新科,等: β-环糊精基阻燃剂的应用进展 ·2405·
2009, 63(3): 100-125. polypropylene[J]. China Plastic (中国塑料), 2008, 22(12): 33-37.
[13] NOVAK C, SORRENTI M, BTTINETTI G. Thermal and structural [32] FENG J X, ZHANG X M, MA S, et al. Syntheses of metallic
characterization of commercial α-, β-, and γ-cyclodextrins[J]. Journal cyclodextrins and their use as synergists in a poly(vinyl alcohol)/
of Thermal Analysis and Calorimetry, 2002, 68(2): 517-529. intumescent flame retardant system[J]. Industrial & Engineering
[14] NARAYANAN G, BOY R, GUPTA B S, et al. Analytical Chemistry Research, 2013, 52(8): 2784-2792.
techniques for characterizing cyclodextrins and their inclusion [33] MANIVANNAN S, RAMARAJ R. Synthesis of cyclodextrin-silicate
complexes with large and small molecular weight guest molecules[J]. sol-gel composite embedded gold nanoparticles and its electrocatalytic
Polymer Testing, 2017, 62(2): 402-439. application[J]. Chemical Engineering Journal, 2012, 210: 195-202.
[15] LUDA M P, ZANETTI M. Cyclodextrins and cyclodextrin [34] KOCHKAR H, AOUINE M, GHORBEL A, et al. Shape-controlled
derivatives as green char promoters in flame retardants formulations synthesis of silver and palladium nanoparticles using β-cyclodextrin[J].
for polymeric materials. A review[J]. Polymers, 2019, 11(4): 664- Journal of Physical Chemistry C, 2011, 115(23): 11364-11373.
693. [35] WANG H F, LI B. Synergistic effects of β-cyclodextrin containing
[16] EMM D V. Cyclodextrins and their uses: A review[J]. Process silicone oligomer on intumescent flame retardant polypropylene
Biochemistry, 2004, 39(9): 1033-1046. system[J]. Polymers for Advanced Technologies, 2010, 21(10): 691-
[17] ARORA P, DHINGRA N. Cyclodextrin: A versatile ingredient[M]. 697.
London: IntechOpen, 2018. [36] TEOH E L, CHOW W S, JAAFAR M. β-cyclodextrin as a partial
[18] TROTTA F, ZANETTI M, CAMINO G. Thermal degradation of replacement of phosphorus flame retardant for poly(lactic acid)/poly
cyclodextrins[J]. Polymer Degradation and Stability, 2000, 69(3): (methyl methacrylate): A more environmental friendly flame-retarded
373-379. blends[J]. Polymer-Plastics Technology and Engineering, 2017, 56(15):
[19] ZHANG L D, WU W, LI J H, et al. New insight into the preparation 1680-1694.
of flame-retardant thermoplastic polyether ester utilizing β-cyclodextrin [37] DOU Y L (窦艳丽), LI X F (李雪菲), ZHANG T Q (张天琪), et al.
as a charring agent[J]. High Performance Polymers, 2016, 29(4): Effects of β-cyclodextrin-ammonium polyphosphate on the flame
422-430. retardant properties of jute/polypropylene composites[J]. Journal of
[20] FENG J X, SU S P, ZHU J. An intumescent flame retardant system Composite Materials (复合材料学报), 2019, 36(11): 2568-2578.
using β-cyclodextrin as a carbon source in polylactic acid (PLA)[J]. [38] VEERAPPAGOUNDER S, NALANKILLI G,
Polymers for Advanced Technologies, 2011, 22(7): 1115-1122. SHANMUGASUNDARAM O L. Study on properties of cotton fabric
[21] ZHANG H X (张红霞), LIU C W (刘昌伟). Flame retardant incorporated with diammonium phosphate flame retardant through
properties and thermal degradation kinetics of polyammonium cyclodextrin and 1, 2, 3, 4-butane tetracarboxylic acid binding
phosphate/cyclodextrin/silicone rubber composites[J]. Journal of system[J]. Journal of Industrial Textiles, 2014, 45(6): 1204-1220.
Nankai University: Natural Science (南开大学学报: 自然科学版), [39] PONCHEL A, ABRAMSON S, QUARTARARO J, et al. Cyclodextrin
2020, 53(1): 7-11. silica-based materials: Advanced characterizations and study of their
[22] WANG S W (王树伟). Preparation and application of biological complexing behavior by diffuse reflectance UV-vis spectroscopy[J].
expansion flame retardants in fire retardant coatings for steel Microporous and Mesoporous Materials, 2004, 75(3): 261-272.
structures[D]. Shenyang: Shenyang University of Chemical [40] HAPIOT F, TILLOY S, MONFLIER E. Cyclodextrins as
Technology (沈阳化工大学), 2018. supramolecular hosts for organometallic complexes[J]. Chemical
[23] ZHENG Z H, ZHANG L, LIU Y, et al. A facile and novel Reviews, 2006, 106(3): 767-781.
modification method of β-cyclodextrin and its application in [41] HUANG L, ALLEN E, TONELLI A E. Inclusion compounds formed
intumescent flame-retarding polypropylene with melamine phosphate between cyclodextrins and nylon 6[J]. Polymer, 1999, 40(11):
and expandable graphite[J]. Journal of Polymer Research, 2016, 3211-3221.
23(4): 1-17. [42] WANG X F, XING W Y, WANG B B, et al. Comparative study on
[24] ZHANG T Q (张天琪). The flame retardant fiber composite was the effect of beta-cyclodextrin and polypseudorotaxane as carbon
prepared by combining cyclodextrin with nitrogen and phosphorus sources on the thermal stability and flame retardance of polylactic
flame retardants[D]. Jilin: Jilin University (吉林大学), 2018. acid[J]. Industrial & Engineering Chemistry Research, 2013, 52(9):
[25] HAN F T, LIU Q Y, LAI X J, et al. Compatibilizing effect of 3287-3294.
β-cyclodextrin in RDP/phosphorus-containing polyacrylate composite [43] SHAN X Y, JIANG K Y, LI J C, et al. Preparation of β-cyclodextrin
emulsion and its synergism on the flame retardancy of the latex Inclusion complex and its application as an intumescent flame
film[J]. Progress in Organic Coatings, 2014, 77(5): 975-980. retardant for epoxy[J]. Polymers, 2019, 11(1): 71-82.
[26] VAHABI H, SHABANIAN M, ARYANASAB F, et al. Three in [44] SHAN X Y, HAN J, LI J C, et al. Preparation of β-CD@ferrocene@
one:β-Cyclodextrin, nanohydroxyapatite, and a nitrogen-rich polymer hollow mesoporous silica microsphere and investigation of its flame
integrated into a new flame retardant for poly (lactic acid)[J]. Fire retardant EP[J]. Polymer Composites, 2020, 41(5): 2013-2024.
and Materials, 2018, 42(6): 593-602. [45] ZHAO X M, XIAO D, ALONSO J P, et al. Inclusion complex
[27] HADDLETON D M, OHNO K, WONG B. Synthesis of well-defined between beta-cyclodextrin and phenylphosphonicdiamide as novel
cyclodextrin-core star polymers[J]. Journal of Polymer Science, Part bio-based flame retardant to epoxy: Inclusion behavior, characterization
A: Polymer Chemistry, 2001, 39(13): 2206-2214. and flammability[J]. Materials & Design, 2017, 114(9): 623-634.
[28] ZHANG Y, HAN P Y, FANG Z P. Synthesis of phospholipidated [46] ZHANG N S, SHEN J L, PASQUINELLI M A, et al. Formation and
β-cyclodextrin and its application for flame-retardant poly(lactic characterization of an inclusion complex of triphenyl phosphate and
acid) with ammonium polyphosphate[J]. Journal of Applied Polymer β-cyclodextrin and its use as a flame retardant for polyethylene
Science, 2018, 135(13): 46054-46067. terephthalate[J]. Polymer Degradation and Stability, 2015, 120(10):
[29] ZENG S L, XING C Y, CHEN Y, et al. Green flame-retardant 240-250.
flexible polyurethane foam based on cyclodextrin[J]. Polymer [47] FERNANDEZ M A, SILVA O F, VICO R V, et al. Complex systems
Degradation and Stability, 2020, 178: 109171-109182. that incorporate cyclodextrins to get materials for somespecific
[30] WANG H F (王环峰). Synthesis, characterization and application of applications[J]. Carbohydrate Research, 2019, 480: 12-34.
siloxane bridged cyclodextrin[D]. Harbin: Northeast Forestry [48] RUSA C C, LUCA C, TONELLI A E. Polymer-cyclodextrin inclusion
University (东北林业大学), 2009. compounds: Toward new aspects of their inclusion mechanism[J].
[31] WANG H F (王环峰), LI B (李斌). Study on synergistic effect of Macromolecules, 2001, 34(5): 1318-1322.
silicone modified cyclodextrin in expanded flame retardant (下转第 2425 页)