Page 85 - Read Online
P. 85

Page 34 of 34                            Yan et al. Soft Sci. 2025, 5, 8  https://dx.doi.org/10.20517/ss.2024.66

               136.      Xu, W.; Yang, W.; Su, J.; et al. Diatom-based biomass composites phase change materials with high thermal conductivity for battery
                    thermal management. J. Energy. Storage. 2024, 96, 112737.  DOI
               137.      Wang, C.; Liu, Q.; Song, H.; Jiang, Q. Vacuum filtration method towards flexible thermoelectric films. Soft. Sci. 2023, 3, 34.  DOI
               138.      Hong, M.; Sun, S.; Lyu, W.; et al. Advances in printing techniques for thermoelectric materials and devices. Soft. Sci. 2023, 3, 29.
                    DOI
               139.      Shen, L.; Liu, M.; Liu, P.; et al. A lamellar-ordered poly[bi(3,4-ethylenedioxythiophene)-alt-thienyl] for efficient tuning of
                    thermopower without degenerated conductivity. Soft. Sci. 2023, 3, 20.  DOI
               140.      Li, X.; Sheng, X.; Fang, Y.; et al. Wearable Janus-type film with integrated all-season active/passive thermal management, thermal
                    camouflage, and ultra-high electromagnetic shielding efficiency tunable by origami process. Adv. Funct. Materials. 2023, 33,
                    2212776.  DOI
               141.      Gong, S.; Sheng, X.; Li, X.; et al. A multifunctional flexible composite film with excellent multi-source driven thermal management,
                    electromagnetic interference shielding, and fire safety performance, inspired by a “Brick–Mortar” sandwich structure. Adv. Funct.
                    Materials. 2022, 32, 2200570.  DOI
               142.      Yang, Z.; Ma, Y.; Jia, S.; et al. 3D-printed flexible phase-change nonwoven fabrics toward multifunctional clothing. ACS. Appl.
                    Mater. Interfaces. 2022, 14, 7283-91.  DOI
               143.      Ge, X.; Tay, G.; Hou, Y.; et al. Flexible and leakage-proof phase change composite for microwave attenuation and thermal
                    management. Carbon 2023, 210, 118084.  DOI
               144.      Li, X.; Sheng, M.; Gong, S.; et al. Flexible and multifunctional phase change composites featuring high-efficiency electromagnetic
                    interference shielding and thermal management for use in electronic devices. Chem. Eng. J. 2022, 430, 132928.  DOI
               145.      Liang, Y.; Tong, Y.; Tao, Z.; Guo, Q.; Hao, B.; Liu, Z. Multifunctional shape-stabilized phase change materials with enhanced
                    thermal conductivity and electromagnetic interference shielding effectiveness for electronic devices. Macro. Mater. Eng. 2021, 306,
                    2100055.  DOI
               146.      Hu, B.; Guo, H.; Li, J.; et al. Dual-encapsulated phase change composites with hierarchical MXene-graphene monoliths in graphene
                    foam for high-efficiency thermal management and electromagnetic interference shielding. Compos. Part. B. Eng. 2023, 266, 110998.
                    DOI
               147.      Guo, H.; Hu, B.; Shan, H.; Li, Z.; Qi, W.; Li, B. Magnetically assembled flexible phase change composites with vertically aligned
                    structures for thermal management and electromagnetic interference shielding. Chem. Eng. J. 2024, 495, 153361.  DOI
               148.      Xiao, Y.; He, Y.; Wang, R.; et al. Mussel-inspired strategy to construct 3D silver nanoparticle network in flexible phase change
                    composites with excellent thermal energy management and electromagnetic interference shielding capabilities. Compos. Part. B. Eng.
                    2022, 239, 109962.  DOI
               149.      Liang, C.; Zhang, W.; Liu, C.; et al. Multifunctional phase change textiles with electromagnetic interference shielding and multiple
                    thermal response characteristics. Chem. Eng. J. 2023, 471, 144500.  DOI
   80   81   82   83   84   85   86   87   88   89   90