Mechanically Robust Nanoporous Polyimide/Silica Aerogels for Thermal Superinsulation of Aircraft
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Hui Ji | Sizhao Zhang | F. Ding | Yunyun Xiao | K. Lu | Jing Wang | Guangyu Xu | Zhao Wang
[1] Hui Ji,et al. Polyimide Aerogels with Excellent Thermal Insulation, Hydrophobicity, Machinability, and Strength Evolution at Extreme Conditions , 2022, ACS Applied Polymer Materials.
[2] X. Duan,et al. Hypocrystalline ceramic aerogels for thermal insulation at extreme conditions , 2022, Nature.
[3] Sizhao Zhang,et al. Excellent antioxidizing, thermally insulating and flame resistance silica‐polybenzoxazine aerogels for aircraft ablative materials , 2022, Journal of Applied Polymer Science.
[4] G. Shao,et al. Fabrication and microstructure evolution of monolithic bridged polysilsesquioxane-derived SiC ceramic aerogels , 2022, Ceramics International.
[5] Shengzhuo Ge,et al. Cogel Strategy for the Preparation of a "Thorn"-Like Porous Halloysite/Gelatin Composite Aerogel with Excellent Mechanical Properties and Thermal Insulation. , 2022, ACS applied materials & interfaces.
[6] D. Opris,et al. Heterogeneous Silica-Polyimide Aerogel-in-Aerogel Nanocomposites , 2022, SSRN Electronic Journal.
[7] Hanfu Wang,et al. Multifunctional polyimide films with superheat-resistance, low coefficient of thermal expansion and fluorescence performance , 2022, Polymer.
[8] Huan Liu,et al. Polyimide/phosphorene hybrid aerogel-based composite phase change materials for high-efficient solar energy capture and photothermal conversion , 2022, Applied Thermal Engineering.
[9] Hongjie Wang,et al. Strong, superelastic and multifunctional SiC@ pyrolytic carbon nanofibers aerogels , 2022, Carbon.
[10] Fujun Xu,et al. Biomimetic architectured Kevlar/polyimide composites with ultra-light, superior anti-compressive and flame-retardant properties , 2021, Composites Part B: Engineering.
[11] Hongwei Liao,et al. Superhydrophobic surface based on the self-growing structure of BaAl2Si2O8 glass-ceramics , 2021, Ceramics International.
[12] Le Xie,et al. Preparation of functionalized halloysite reinforced polyimide composite aerogels with excellent thermal insulation properties , 2021 .
[13] Tianxi Liu,et al. Layered double hydroxide/graphene oxide synergistically enhanced polyimide aerogels for thermal insulation and fire-retardancy , 2021 .
[14] D. Fang,et al. Super-flexible polyimide nanofiber cross-linked polyimide aerogel membranes for high efficient flexible thermal protection , 2021 .
[15] Q. Xiao,et al. Construction and Nanostructure of Chitosan/Nanocellulose Hybrid Aerogels. , 2021, Biomacromolecules.
[16] Xiaodong Wang,et al. Properties improvement of linear polyimide aerogels via formation of doubly cross-linked polyimide-polyvinylpolymethylsiloxane network structure , 2021 .
[17] Jian Ren,et al. Thermal and Mechanical Performances of the Superflexible, Hydrophobic, Silica-Based Aerogel for Thermal Insulation at Ultralow Temperature. , 2021, ACS applied materials & interfaces.
[18] Yan Zhao,et al. Ultralight and heat-insulating mesoporous polyimide aerogels cross-linked with aminated SiO2 nanoparticles , 2021 .
[19] Caofeng Pan,et al. Lightweight, Superelastic, and Hydrophobic Polyimide Nanofiber /MXene Composite Aerogel for Wearable Piezoresistive Sensor and Oil/Water Separation Applications , 2021, Advanced Functional Materials.
[20] Dongchu Chen,et al. Enhanced thermal storage capacity of paraffin/diatomite composite using oleophobic modification , 2021 .
[21] Obinna Uyanna,et al. Thermal protection systems for space vehicles: A review on technology development, current challenges and future prospects , 2020 .
[22] Maoyuan Li,et al. Coupled ablation and thermal behavior of an all-composite structurally integrated thermal protection system: Fabrication and modeling , 2020 .
[23] Hongjie Wang,et al. Anisotropic and hierarchical SiC@SiO2 nanowire aerogel with exceptional stiffness and stability for thermal superinsulation , 2020, Science Advances.
[24] M. A. Meador,et al. Flexible Polyimide Aerogels Derived from the Use of a Neopentyl Spacer in the Backbone , 2020 .
[25] Yan Zhao,et al. Silver nanoparticles cross-linked polyimide aerogels with improved high temperature microstructure stabilities and high mechanical performances , 2020 .
[26] Sizhao Zhang,et al. Structure, compression and thermally insulating properties of cellulose diacetate-based aerogels , 2020 .
[27] F. Scarpa,et al. Perforation of needle-punched carbon-carbon composites during high-temperature and high-velocity ballistic impacts , 2020 .
[28] Sizhao Zhang,et al. Thermal conductivities of cellulose diacetate based aerogels , 2020, Cellulose.
[29] Qi Wang,et al. Dioxybenzene-bridged hydrophobic silica aerogels with enhanced textural and mechanical properties , 2020, Microporous and Mesoporous Materials.
[30] Xiaodong Wu,et al. Synthesis and textural evolution of mesoporous Si3N4 aerogel with high specific surface area and excellent thermal insulation property via the urea assisted sol-gel technique , 2020 .
[31] Yang Fan,et al. Mechanically strong and thermally insulating polyimide aerogels by homogeneity reinforcement of electrospun nanofibers , 2020 .
[32] D. Fakin,et al. Processing and functional assessment of anisotropic cellulose nanofibril/Alolt/sodium silicate: based aerogels as flame retardant thermal insulators , 2019, Cellulose.
[33] Xian-ming Wang,et al. Superhydrophobic surface with lotus/petal effect and its improvement on fatigue resistance of heat-resistant steel , 2019 .
[34] Hongjie Wang,et al. Scalable Fabrication of Resilient SiC Nanowires Aerogels with Exceptional High Temperature Stability. , 2019, ACS applied materials & interfaces.
[35] Danyang Zhu,et al. Preparation and characterization of highly hydrophobic fluorinated polyimide aerogels cross-linked with 2,2′,7,7′-Tetraamino- 9,9′-spirobifluorene , 2019, Polymer.
[36] Yan Yu,et al. Ultralight, hydrophobic, anisotropic bamboo-derived cellulose nanofibrils aerogels with excellent shape recovery via freeze-casting. , 2019, Carbohydrate polymers.
[37] Sizhao Zhang,et al. Ultra-low shrinkage chitosan aerogels trussed with polyvinyl alcohol , 2018, Materials & Design.
[38] Hongjie Wang,et al. Ultralight, Recoverable, and High-Temperature-Resistant SiC Nanowire Aerogel. , 2018, ACS nano.
[39] S. Agarwal,et al. Ultralight, Thermally Insulating, Compressible Polyimide Fiber Assembled Sponges. , 2017, ACS applied materials & interfaces.
[40] Sizhao Zhang,et al. Formation of enhanced gelatum using ethanol/water binary medium for fabricating chitosan aerogels with high specific surface area , 2017 .
[41] Xueyong Ren,et al. Developing flame-retardant lignocellulosic nanofibrils through reactive deep eutectic solvent treatment for thermal insulation , 2022, Chemical Engineering Journal.
[42] Tianxi Liu,et al. Highly flexible and compressible polyimide/silica aerogels with integrated double network for thermal insulation and fire-retardancy , 2022, Journal of Materials Science & Technology.