[1] 张玉龙.泡沫塑料基础知识读本[M].北京:化学工业出版社,2013.
[2] 王宝春,郑威,袁秀梅.泡沫塑料研究进展[J].工程塑料应用,2009,37(10):77-82.
[3] 王真,戴珍,赵宁,等.气凝胶材料研究的新进展[J].高分子通报,2013(9):55-60.
[4] 陈颖,邵高峰,吴晓栋,等.聚合物气凝胶研究进展[J].材料导报,2016(13):55-62.
[5] 高燕,周永风,杨青林,等.超轻材料[J].化学进展,2015,27(12):1714-1721.
[6] 顾宜,冉起超.聚苯并口恶嗪—结构·性能·应用[M].北京:科学出版社,2019.
[7] Ishida H,Froimowicz P.Advanced and emerging polybenzoxazine science and technology[M].Amsterdam:Elsevier,2017.
[8] 曾鸣,王洛礼.苯并口恶嗪树脂的合成及应用[J].化工新型材料,2000(5):14-15.
[9] Lorjai P,Wongkasemjit S,Chaisuwan T.Preparation of polybenzoxazine foam and its transformation to carbon foam[J].Materials Science & Engineering:A (Structural Materials:Properties,Microstructure and Processing),2009,527(1-2):77-84.
[10] Ardanuy M,Rodríguez-Pérez M A,Saja J A,et al.Foaming behavior,cellular structure and physical properties of polybenzoxazinefoams[J].Polymers for Advanced Technologies,2012,23(5):841-849.
[11] Zúñiga C,Lligadas G,Ronda J C,et al.Self-foaming diphenolic acid benzoxazine[J].Polymer,2012,53(15):3089-3095.
[12] Zúñiga C,Larrechi M S,Lligadas G,et al.Phosphorus flame retardant polybenzoxazine foams based on renewable diphenolic acid[J].Polymer Degradation and Stability,2013,98(12):2617-2626.
[13] Zúñiga Ruiz C J,Szczurek A,Yuso Arisa A M,et al.Closed-cells carbon foams from diphenolic acid-based polybenzoxazine[J].Carbon,2015,95,919-929.
[14] Zúñiga C,Larrechi M S,Lligadas G,et al.Polybenzoxazine foams:modeling mechanical properties[J].Journal of Cellular Plastics,2016,52(6):657-669.
[15] 杜娟,华磊,段辉平.中空玻璃微球性质及其应用[J].科技导报,2013,31(15):73-79.
[16] Kumar K S S,Nair C P R,Ninan K N.Mechanical properties of polybenzoxazine syntactic foams[J].Journal of Applied Polymer Science,2008,108(2):1021-1028.
[17] Kumar K S S,Nair C P R,Ninan K N.Silica fiber-polybenzoxazine-syntactic foams;Processing and properties[J].Journal of Applied Polymer Science,2008,107(2):1091-1099.
[18] Ullas A V,Sharma P,Kumar D,et al.Rheokinetic studies and compressive response of high performance polybenzoxazine syntactic foams[J].Journal of Applied Polymer Science,2019,136(12):47234-47241.
[19] Lorjai P,Chaisuwan T,Wongkasemjit S.Porous structure of polybenzoxazine-based organic aerogel prepared by sol-gel process and their carbon aerogels[J].Journal of Sol-Gel Science and Technology,2009,52(1):56-64.
[20] Lorjai P,Wongkasemjit S,Chaisuwan T,et al.Significant enhancement of thermal stability in the non-oxidative thermal degradation of bisphenol-A/aniline based polybenzoxazineaerogel[J].polymer degradation & stability,2011,96(4):708-718.
[21] Chaisuwan T,Komalwanich T,Luangsukrerk S,et al.Removal of heavy metals from model wastewater by using polybenzoxazine aerogel[J].Desalination,2010,256(1-3):108-114.
[22] Katanyoota P,Chaisuwan T,Wongchaisuwat A,et al.Novel polybenzoxazine-based carbon aerogel electrode for supercapacitors[J].Materials Science & Engineering,2010,167(1):36-42.
[23] Thubsuang U,Sukanan D,Sahasithiwat S,et al.Highly sensitive room temperature organic vapor sensor based on polybenzoxazine-derived carbon aerogel thin film composite[J].Materials Science & Engineering B,2015,200:67-77.
[24] Mahadik-Khanolkar S,Donthula S,Sotiriou-Leventis C,et al.Polybenzoxazine aerogels.1.high-yield room-temperature acid-catalyzed synthesis of robust monoliths,oxidative aromatization,and conversion to microporous carbons[J].Chemistry of Materials,2014,26(3):1303-1317.
[25] Gu S,Li Z,Miyoshib T,et al.Polybenzoxazine aerogels with controllable pore structures[J].RSC Adv,2015,5,26801-26805.
[26] Xiao Y,Li L,Zhang S,et al.Thermally insulating polybenzoxazine aerogels based on 4,4′-diamino-diphenylmethanebenzoxazine[J].Journal of Materials Science,2019,54(15):12951-12961.
[27] Xiao Y,Li L,Zhang S,et al.Thermal insulation characteristics of polybenzoxazine aerogels[J].Macromolecular Materials & Engineering,2019,304(7):1900137-1900143.
[28] Malakooti S,Qin G,Mandal C,et al.Low-cost,ambient dried,superhydrophobic,high strength,thermally insulating and thermally resilient polybenzoxazine aerogels[J].ACS Applied Polymer Materials,2019,1:2322-2333.
[29] Zhang M,Chen M,Reddeppa N,et al.Nitrogen self-doped carbon aerogels derived from trifunctional benzoxazine monomer as ultralight supercapacitor electrodes[J].Nanoscale,2018,10(14):6549-6557.
[30] Alhwaige A A,Alhassan S M,Katsiotis M S,et al.Interactions,morphology and thermal stability of graphene-oxide reinforced polymer aerogels derived from star-like telechelic aldehyde-terminal benzoxazine resin[J].RSC Advances,2015,5:92719-92731.
[31] Alhwaige A A,Ishida H,Qutubuddin S.Chitosan/polybenzoxazine/clay mixed matrix composite aerogels:preparation,physical properties,and water absorbency[J].Applied Clay Science,2020,184:105403-105413.
[32] Alhwaige A A,Ishida H,Qutubuddin S.Carbon aerogels with excellent CO2 adsorption capacity synthesized from clay-reinforced biobased chitosan-polybenzoxazine nanocomposites[J].ACS Sustainable Chem Eng,2016,4(3):1286-1295.
[33] Berthon-Fabry S,Hildenbrand C,Ilbizian P.Lightweight superinsulating Resorcinol-Formaldehyde-APTES benzoxazine aerogel blankets for space applications[J].European Polymer Journal,2016,78:25-37.