Amador P, Martinez E, Sanchez-Daza O, et al. Energies of combustion and standard molar enthalpies of formation of ricinoleic acid and methyl ricinoleate[J]. J. Chem. Thermodynamics, 2012, 50:15-18.
[2]
Ning Z Y, Zhang Q S, Wu Q P, et al. Efficient synthesis of hydroxyl functioned polyesters from natural polyols and sebacic acid[J]. Chinese Chemical Letters, 2011, 22(6):635-638.
[3]
Sharmin E, Alam M S, Philip R K, et al. Linseed amide diol/DGEBA epoxy blends for coating applications:Preparation, characterization, ageing studies and coating properties[J]. Progress in Organic Coatings, 2010, 67(2):170-179.
[4]
Ning Z Y, Zhang Q S, Wu Q P, et al. Efficient synthesis of hydroxyl functioned polyesters from natural polyols and sebacic acid[J]. Chinese Chemical Letters, 2011, 22:635-638.
[5]
Djordjevic I, Choudhury N R, Dutta, N K, et al. Synthesis and characterization of novel citric acid-based polyester elastomers[J]. Polymer, 2009, 50:1682-1691.
[6]
Zhang Z, Chen L B, Gao J, et al. Preparation of poly(sebacic anhydride) and polylactic acid pills used as drug carrier for levofloxacin controlled release[J]. Journal of Polymer Engineering, 2013, 33(7):659-664.
[7]
Levy-Nissenbaum E, Khan W, Pawar R P, et al. Pharmacokinetic and efficacy study of cisplatin and paclitaxel formulated in a new injectable poly(sebacic-co-ricinoleic acid) polymer[J]. European Journal of Pharmaceutics and Biopharmaceutics, 2012, 82(1):85-93.
[8]
Samano C, Cifuentes F, Morales M A. Neurotransmitter segregation:Functional and plastic implications[J]. Progress in Neurobiology, 2012, 97(3):277-287.
[9]
de Meirleir N, Pellens L, Broeckx W, et al. The rheological properties of hydrogenated castor oil crystals[J]. Colloid and Polymer Science, 2014, 292(10):2539-2547.
[10]
Sinadinovic-Fiser S, Jankovic M, Borota O. Epoxidation of castor oil with peracetic acid formed in situ in the presence of an ion exchange resin[J]. Chemical Engineering and Processing, 2012, 62:106-113.
[11]
Abbasi E, Vatankhah M, Hosseini Y, et al. Synthesis, structure, and mechanical properties of castor oil-based polyamidoamines toughenedepoxy coatings[J]. Journal of Applied Polymer Science, 2013, 128(6):4023-4030.
[12]
Santacesaria E, Tesser R. A biphasic model describing soybean oil epoxidation with H2O2 in a fed-batch reactor[J]. Chemical Engineering Journal, 2011, 173:198-209.
[13]
Chen S B, Wang Q H, Wang T M. Physical properties of aramid fiber reinforced castor oil-based polyurethane/epoxy resin IPN composites[J]. Journal of Reinforced Plastics and Composites, 2013, 32(15):1136-1142.
[14]
Zhang C Q, Li Y Z, Chen R Q, et al. Polyurethanes from solvent-free vegetable oil-based polyols[J]. Sustainable Chemistry & Engineering, 2014, 2(10):2465-2476.
[15]
Elsheikh Y A. Bronsted imidazolium ionic liquids:Synthesis and comparison of their catalytic activities as pre-catalyst for biodiesel production through two stage process[J]. Energy Conversion and Management, 2011, 52(2):804-809.
De B, Gupta K, Mandal M, et al. Biodegradable hyperbranched epoxy from castor oil-based hyperbranched polyester polyol[J]. Sustainable Chemistry & Engineering, 2014, 2(3):445-453.
[18]
Fu C Q, Yang Z, Zheng Z T, et al. Properties of alkoxysilane castor oil synthesized via thiol-ene and its polyurethane/siloxane hybrid coating films[J]. Progress in Organic Coating, 2014, 77(8):1241-1248.
[19]
Gurunathan T, Mohanty S, Nayak S K. Preparation and performance evaluation of castor oil-based polyurethane prepolymer/polylactide blends[J]. Journal of Materials Science, 2014, 49(23):8016-8030.
[20]
Eceiza A, Caba K, Martin M D, et al. Thermoplastic polyurethane elastomers based on polycarbonate diol with different soft segment molecular weight and chemical structure:Mechanical and thermal properties[J]. Polymer Engineering and Science, 2008, 48:297-306.
[21]
Alam M, Akra D, Sharmin E, et al. Vegetable oil based eco-friendly coating materials:A review article[J]. Arabian Journal of Chemistry, 2014, 7(4):469-479.
[22]
Choi T, Weksler J, Padsalgikar A, et al. Influence of soft segment composition on phase-separated microstructure of polydimethylsiloxane-based segmented polyurethanes copolymers[J]. Polymer, 2009, 50:2320-2327.
[23]
Bakhshi H, Yeganeh H, Yari A, et al. Castor oil-based polyurethane coatings containing benzyl triethanol ammonium chloride:Synthesis, characterization, and biological properties[J]. Journal of Materials Science, 2014, 49(15):5365-5377.
[24]
Rueda-Larraz L, Fernández d'Arlas B, Tercjak A, et al. Synthesis and structure behaviour of segmented polyurethanes based on a tbiodegradable PCL-PTHF-PCL block copolymer as soft segment[J]. European Polymer Journal, 2009, 45:2096-2109.
[25]
Hablot E, Zheng D, Bouquey M, et al. Polyurethane based on castor oil:Kinetics, chemical, mechanical and thermal properties[J]. Macromol Mater Engineering, 2008, 293:922-929.
[26]
Santos W L F, Silva A J P, Cabral A A, et al. Particleboard manufactured from tauari (couratari oblongifolia) wood waste using castor oilbased polyurethane resin[J]. Materials Research- Ibero-American Journal of Materials, 2014, 17(3):657-663.
[27]
Corcuera M A, Rueda L. Microstructure and properties of polyurethanes derived from castor oil[J]. Polymer Degradation and Stability, 2010, 95:2175-2184.
[28]
Thakur S, Karak N. Castor oil-based hyperbranched polyurethanes as advanced surface coating materials[J]. Progress in Organic Coatings, 2013, 76:157-164.
[29]
Du J J, Zuo Y, Zou Q, et al. Preparation and in vitro evaluation of polyurethane composite scaffolds based on glycerol esterified castor oil and hydroxyapatite[J]. Materials Research Innovations, 2014, 18(3):160-168.
[30]
Deka H, Karak N. Bio-based hyperbranched polyurethanes for surface coating applications[J]. Progress in Organic Coatings, 2009, 66:192-198.
[31]
Shaik A, Narayan R, Raju K V S N. Synthesis and properties of siloxane-crosslinked polyurethane-urea/silica hybrid films fromcastor oil[J]. Journal of Coatings Technology and Research, 2014, 11(3):397-407.
[32]
Mohamed H A, Badran B M, Rabie A M, et al. Synthesis and characterization of aqueous (polyurethane/aromatic polyamide sulfone) copolymer dispersions from castor oil[J]. Progress in Organic Coating, 2014, 77(5):965-974.
[33]
Saralegi A, Gonzalez M L, Valea A, et al. The role of cellulose nanocrystals in the improvement of the shape-memory properties of castoroil-based segmented thermoplastic polyurethanes[J]. Composites Science and Technology, 2014, 92:27-33.
[34]
Abbasi E, Vatankhah M, Hosseini Y, et al. Synthesis, structure and mechanical properties of castor oil-based polyamidoamines toughened epoxy coatings[J]. Applied Polymer, 2012, 128(6):4023-4030.
[35]
Farag S, Fu D B, Jessop P G, et al. Detailed compositional analysis and structural investigation of a bio-oil from microwave pyrolysis of kraft lignin[J]. Journal of Analytical and Applied Pyrolysis, 2014, 109:249-257.
[36]
Tokiwa Y, Kitagawa M, Raku T, et al. Enzymatic synthesis of arbutin undecylenic acid ester and its inhibitory effect on melanin synthesis[J]. Bioorganic&Medicinal Chemistry Letters, 2007, 17:3105-3108.
[37]
Samano C, Cifuentes F, Morales M A. Neurotransmitter segregation:
[38]
Functional and plastic implications[J]. Progress in Neurobiology, 2012, 97(3):277-287.
[39]
Chua S C, Xu X B, Guo Z. Emerging sustainable technology for epoxidation directed toward plant oil-based plasticizers[J]. Process Biochemistry, 2012, 47:1439-1451.
Jankovic M R, Sinadinovic-Fiser S V, Govedarica O M. Kinetics of the epoxidation of castor oil with peracetic acid formed in situ in the presence of an ion-exchange resin[J]. Industrial & Engineering Chemistry Research, 2014, 53(22):9357-9364.
[42]
Liu S W, Li L, Yu S T, et al. Polymerization of fatty acid methyl ester using acidic ionic liquid as catalyst[J]. Chinese Journal of Catalysis, 2010, 31(12):1433-1438.
[43]
Dias J M, Araujo J M, Costa J F, et al. Biodiesel production from raw castor oil[J]. Energy, 2013, 53:58-66.
[44]
Zeng Q F, Dong G N. Influence of load and sliding speed on super-low friction of nitinol 60 alloy under castor oil lubrication[J]. Tribology Letters, 2013, 52(1):47-55.
[45]
吴杰. 环氧乙酰蓖麻油酸甲酯的工艺研究[J]. 农业机械, 2011, 61(4):61-64.
[46]
Doudin K, Al-Malaika S, Dole H, et al. Effect of contact surfaces on the thermal and photooxidation of dehydrated castor oil[J]. Polymer Degradation and Stability, 2011, 96:438-454.
[47]
Dupe A, Achard M, Fischmeister C, et al. Methyl ricinoleate as platform chemical for simultaneous production of fine chemicals and polymer precursors[J]. ChemSusChem, 2012, 5(11):2249-2254.
[48]
Rejaibi M, Bigot S, Kebir N, et al. Elaboration of novel biosourced AA-BB polyamides with dangling chains from methyl ricinoleate[J]. European Journal of Lipid Science and Technology, 2014, 116(7):918-927.
[49]
Reddy K K, Ravinder T, Kanjilal S. Synthesis and evaluation of antioxidant and antifungal activities of novel ricinoleate-based lipoconjugates of phenolic acids[J]. Food Chemistry, 2012, 134(4):2201-2207.
[50]
Gomes N, Teixeira J A, Belo I. Fed-batch versus batch cultures of yarrowia lipolytica for gamma-decalactone production frommethyl ricinoleate[J]. Biotechnology Letters, 2012, 34(4):649-654.
[51]
Miao X, Malacea R, Fischmeister C, et al. Ruthenium-alkylidene catalysed cross-metathesis of fatty acid derivatives with acrylonitrile andmethyl acrylate:A key step toward long-chain bifunctional and amino acid compounds[J]. Green Chemistry, 2011, 13(10):2911-2919.
[52]
Amador P, Martinez E, Sanchez-Daza O, et al. Energies of combustion and standard molar enthalpies of formation of ricinoleic acid and methylricinoleate[J]. Journal of Chemical Thermodynamics, 2012, 50:15-18.
[53]
Panwar N L, Shrirame H Y, Rathore N S, et al. Performance evaluation of a diesel engine fueled with methyl ester of castor seed oil[J]. Applied Thermal Engineering, 2010, 30:245-249.
[54]
i>Meller E, Green U, Aizenshtat Z, et al. Catalytic deoxygenation of castor oil over Pd/C for the production of cost effective biofuel[J]. Fuel, 2014, 133:89-95.
[55]
Albuquerque A D, Maul J, Santos J P, et al. Estimation of the oxidation temperature of biodiesels from a limited number of chemical parameters[J].Fuel, 2012, 102:585-591.
[56]
Sharmin E, Akram D, Zafar F, et al. Plant oil polyol based poly(ester urethane) metallohybrid coatings[J]. Progress in Organic Coatings, 2012, 73(1):118-122.
[57]
Alwaseem H, Donahue CJ, Marincean S. Catalytic transfer hydrogenation of castor oil[J]. Journal of Chemical Education, 2014, 91(4):575-578.