Nano-porous carbon-enabled composite phase change materials with high photo-thermal conversion performance for multi-function coating
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[1] Xiaochao Zuo,et al. Functionally constructed mineral microspheres for efficient photothermal conversion and thermal energy storage , 2022, Carbon.
[2] Huaqing Xie,et al. Energy harvesting and storage blocks based 3D oriented expanded graphite and stearic acid with high thermal conductivity for solar thermal application , 2022, Energy.
[3] Beom Yeol Yun,et al. Evaluation of thermal/morphological performance of SSPCM based nanoclay: Influence of the interlayer microstructure of hydrophilic and hydrophobic , 2022, Solar Energy Materials and Solar Cells.
[4] Yu Fang,et al. Biomass porous potatoes/MXene encapsulated PEG-based PCMs with improved photo-to-thermal conversion capability , 2022, Solar Energy Materials and Solar Cells.
[5] Hongsheng Dong,et al. One-step synthesis of graphene-based composite phase change materials with high solar-thermal conversion efficiency , 2022, Chemical Engineering Journal.
[6] R. Wang,et al. Form-stable Phase Change Composites: Preparation, Performance, and Applications for Thermal Energy Conversion, Storage and Management , 2021, Energy Storage Materials.
[7] X. Sui,et al. Flexible textiles with polypyrrole deposited phase change microcapsules for efficient photothermal energy conversion and storage , 2021 .
[8] Yurong Yan,et al. Ultrafine electrospun fiber based on ionic liquid/AlN/copolyamide composite as novel form-stable phase change material for thermal energy storage , 2021 .
[9] Hongyi Gao,et al. Carbon‐Based Composite Phase Change Materials for Thermal Energy Storage, Transfer, and Conversion , 2021, Advanced science.
[10] Yi Wang,et al. Design of stearic acid/graphene oxide-attapulgite aerogel shape-stabilized phase change materials with excellent thermophysical properties , 2021 .
[11] A. Tang,et al. Porous carbon-based MgAlF5·1.5H2O composites derived from carbon-coated clay presenting super high adsorption capacity for Congo Red , 2021 .
[12] Ang Li,et al. Advanced multifunctional composite phase change materials based on photo-responsive materials , 2021 .
[13] Zhuodi Cai,et al. Polymer based phase change material for photo-thermal utilization , 2021 .
[14] A. Roskilly,et al. Applications and technological challenges for heat recovery, storage and utilisation with latent thermal energy storage , 2020 .
[15] Jiaoning Tang,et al. Multiple phase change-stimulated shape memory and self-healing epoxy composites with thermal regulation function , 2020 .
[16] Deliang Chen,et al. Enhanced thermal conductivity of form-stable composite phase-change materials with graphite hybridizing expanded perlite/paraffin , 2020 .
[17] Ge Wang,et al. Three-dimensional rGO@sponge framework/paraffin wax composite shape-stabilized phase change materials for solar-thermal energy conversion and storage , 2020 .
[18] Zong-liang Du,et al. Flame-retardant and form-stable phase change composites based on black phosphorus nanosheets/cellulose nanofiber aerogels with extremely high energy storage density and superior solar-thermal conversion efficiency , 2020, Journal of Materials Chemistry A.
[19] X. Sheng,et al. Enhanced thermal conductivity of polyurethane/wood powder composite phase change materials via incorporating low loading of graphene oxide nanosheets for solar thermal energy storage , 2020 .
[20] Tao Xu,et al. The application of solar-to-thermal conversion phase change material in novel solar water heating system , 2020 .
[21] X. Sheng,et al. MXene aerogel-based phase change materials toward solar energy conversion , 2020 .
[22] Shiyuan Luo,et al. Three-dimensional graphitic hierarchical porous carbon/stearic acid composite as shape-stabilized phase change material for thermal energy storage , 2020, Applied Energy.
[23] B. B. Lahiri,et al. Carbon black nano particle loaded lauric acid-based form-stable phase change material with enhanced thermal conductivity and photo-thermal conversion for thermal energy storage , 2020 .
[24] Hao Yi,et al. Design of 3D-network montmorillonite nanosheet/stearic acid shape-stabilized phase change materials for solar energy storage , 2020 .
[25] Zhao Yan,et al. Highly stable hierarchical porous nanosheet composite phase change materials for thermal energy storage , 2019 .
[26] Xingxiang Zhang,et al. Enhanced Thermal-to-Flexible Phase Change Materials Based on Cellulose/Modified Graphene Composites for Thermal Management of Solar Energy. , 2019, ACS applied materials & interfaces.
[27] Zhengguo Zhang,et al. Microinfiltration of Mg(NO3)2·6H2O into g-C3N4 and macroencapsulation with commercial sealants: A two-step method to enhance the thermal stability of inorganic composite phase change materials , 2019, Applied Energy.
[28] Min Li,et al. Preparation and characterization of GO/PEG photo-thermal conversion form-stable composite phase change materials , 2019, Renewable Energy.
[29] Bingtao Tang,et al. Electromagnetic and solar energy conversion and storage based on Fe3O4-functionalised graphene/phase change material nanocomposites , 2019, Energy Conversion and Management.
[30] Liangjie Fu,et al. An emerging mineral-based composite flame retardant coating: Preparation and enhanced fireproof performance , 2019, Surface and Coatings Technology.
[31] Fei Xue,et al. Melamine foam-templated graphene nanoplatelet framework toward phase change materials with multiple energy conversion abilities , 2019, Chemical Engineering Journal.
[32] Rouhollah Ahmadi,et al. Development of graphitic domains in carbon foams for high efficient electro/photo-to-thermal energy conversion phase change composites , 2019, Chemical Engineering Journal.
[33] A. Tang,et al. Palygorskite-template amorphous carbon nanotubes as a superior adsorbent for removal of dyes from aqueous solutions. , 2019, Journal of colloid and interface science.
[34] Shufen Zhang,et al. Novel strategies and supporting materials applied to shape-stabilize organic phase change materials for thermal energy storage–A review , 2019, Applied Energy.
[35] Quan-hong Yang,et al. Deactivating Defects in Graphenes with Al2O3 Nanoclusters to Produce Long‐Life and High‐Rate Sodium‐Ion Batteries , 2018, Advanced Energy Materials.
[36] A. Mahmood,et al. Nanoconfined phase change materials for thermal energy applications , 2018 .
[37] Chen Wang,et al. Synthesis of porous carbon from cotton using an Mg(OH)2 template for form-stabilized phase change materials with high encapsulation capacity, transition enthalpy and reliability , 2018 .
[38] Shi Chang,et al. Emerging Nanoclay Composite for Effective Hemostasis , 2018 .
[39] Liangbing Hu,et al. Lightweight, Mesoporous, and Highly Absorptive All-Nanofiber Aerogel for Efficient Solar Steam Generation. , 2018, ACS applied materials & interfaces.
[40] Yunfeng Lu,et al. Synthesis of “graphene-like” mesoporous carbons for shape-stabilized phase change materials with high loading capacity and improved latent heat , 2017 .
[41] Q. Fu,et al. Highly porous graphitic biomass carbon as advanced electrode materials for supercapacitors , 2017 .
[42] Qi Wang,et al. Extremely Black Vertically Aligned Carbon Nanotube Arrays for Solar Steam Generation. , 2017, ACS applied materials & interfaces.
[43] Qiang Zhang,et al. Nanocarbon for Oxygen Reduction Electrocatalysis: Dopants, Edges, and Defects , 2017, Advanced materials.
[44] Shufen Zhang,et al. Fe3O4-functionalized graphene nanosheet embedded phase change material composites: efficient magnetic- and sunlight-driven energy conversion and storage , 2017 .
[45] Wei Yang,et al. An ice-templated assembly strategy to construct graphene oxide/boron nitride hybrid porous scaffolds in phase change materials with enhanced thermal conductivity and shape stability for light–thermal–electric energy conversion , 2016 .
[46] Jing Ouyang,et al. Sepiolite supported stearic acid composites for thermal energy storage , 2016 .
[47] Ruzhu Wang,et al. High performance form-stable expanded graphite/stearic acid composite phase change material for modular thermal energy storage , 2016 .
[48] Hao Cai,et al. Synthesis of stearic acid-stabilized silver nanoparticles in aqueous solution , 2016 .
[49] J. Fang,et al. From anisotropic graphene aerogels to electron- and photo-driven phase change composites , 2016 .
[50] N. Alonso‐Vante,et al. Influence of sp(3)-sp(2) Carbon Nanodomains on Metal/Support Interaction, Catalyst Durability, and Catalytic Activity for the Oxygen Reduction Reaction. , 2016, ACS applied materials & interfaces.
[51] H. Ghasemi,et al. Flexible artificially-networked structure for ambient/high pressure solar steam generation , 2016 .
[52] Benxia Li,et al. Stearic-acid/carbon-nanotube composites with tailored shape-stabilized phase transitions and light–heat conversion for thermal energy storage , 2015 .
[53] Jinhong Li,et al. Enhanced thermal conductivity of PEG/diatomite shape-stabilized phase change materials with Ag nanoparticles for thermal energy storage , 2015 .
[54] H. Fu,et al. Facile synthesis of novel 3D nanoflower-like Cu(x)O/multilayer graphene composites for room temperature NO(x) gas sensor application. , 2014, Nanoscale.
[55] Liangjie Fu,et al. Enhanced performance and interfacial investigation of mineral-based composite phase change materials for thermal energy storage , 2013, Scientific Reports.