| [1] |
Chen X, Ren Y, Wang Z. 2025. Advances in transparent electromagnetic interference shielding materials: a review. |
| [2] |
Zhai M, Zhao S, Guo H, Li X, Shi X, et al. 2025. Bionic-structured electromagnetic interference shielding composites. |
| [3] |
Zhao H, Wang J, He M, Li S, Guo H, et al. 2025. Electromagnetic interference shielding films: structure design and prospects. |
| [4] |
Liu H, Lei F, Xu W, Li Q, Lei C, et al. 2025. Designing carbon-foam composites via molten-state reduction for multifunctional electromagnetic interference shielding. |
| [5] |
Liu J, Yu MY, Yu ZZ, Nicolosi V. 2023. Design and advanced manufacturing of electromagnetic interference shielding materials. |
| [6] |
Wang M, Pan X, Wang Y, Wang Q, Wang J, et al. 2026. Multifunctional bilayer Ag NW-ANF nanocomposite films with excellent mechanical and electromagnetic interference shielding properties. |
| [7] |
Yang W, Pan D, Liu S, Jia G, Wang Y, et al. 2025. Multifunctional wearable conductive nanofiber membrane with antibacterial and breathable ability for superior sensing, electromagnetic interference shielding, and thermal management. |
| [8] |
Mohanan R, Balakrishnan R, Shylaja K, Kalarikkal N, Suresh R, et al. 2026. Flexible PEDOT: PSS/PVA/Co3O4 nanocomposite films with absorption-dominated EMI shielding performance. |
| [9] |
Zhu H, Fu K, Huang T, Liu H, Yang B, et al. 2024. Highly conductive CFRP composite with Ag-coated T-ZnO interlayers for excellent lightning strike protection, EMI shielding and interlayer toughness. |
| [10] |
Chen M, Zhu J, Zhang K, Zhou H, Gao Y, et al. 2024. Carbon nanofiber/polyaniline composite aerogel with excellent electromagnetic interference shielding, low thermal conductivity, and extremely low heat release. |
| [11] |
Zhou Y, Chen M, Xu X, Meng Q, Tu J, et al. 2024. Investigating the effects of γ-ray irradiation on the mechanical and dielectric properties of poly(lactide)/poly(butylene adipate-co-terephthalate)/carbon nanotubes composites. |
| [12] |
Chen J, Guo X, Tan R, Huang M, Ren J, et al. 2025. Achieving the simultaneous improvement of degradation, thermal, and mechanical properties of polylactic acid composite films by carbon quantum dots. |
| [13] |
Chen J, Kong C, Tan R, Ren J, Huang M, et al. 2025. Sustainable multiscale interface engineering of bio-based poly(lactic acid) nanocomposite films. |
| [14] |
Liu T, Feng H, Jin C, Pawlak M, Saeb MR, et al. 2024. Green segregated honeycomb biopolymer composites for electromagnetic interference shielding biomedical devices. |
| [15] |
Miao Y, Lin J, Wang E, Liang Y, Li W, et al. 2023. Electrically conductive bamboo charcoal@cellulose nanofibrils based composite membranes designed for electromagnetic interference shielding and flame retardant. |
| [16] |
Li S, Du Y, Ye H, Wu J, Wang Y, et al. 2024. All-natural self-bonded biocomposite providing superior electromagnetic interference shield performance with effective absorption. |
| [17] |
Yu S, Lu Z, Chen L, Xu C, Zhou J, et al. 2026. Electrically conductive wood-based materials beyond biochar: modifications, functions, and environmental impact. |
| [18] |
Yi B, Sun Z, Deng J, Lim JY, Senadheera S, et al. 2026. Sustainably graphitizing biomass into advanced carbon materials for energy and environmental applications. |
| [19] |
Xu L, Si R, Ni Q, Chen J, Zhang J, et al. 2024. Synergistic magnetic/dielectric loss and layered structural design of Ni@carbon fiber/Ag@graphene fiber/polydimethylsiloxane composite for high-absorption EMI shielding. |
| [20] |
Ren J, Huang C, Tan R, Chen J, Huang M, et al. 2025. All-biomass nanocomposite films via facile and sustainable design procedure for thermal management and electromagnetic interference shielding. |
| [21] |
Han W, Wang Y, Wang L, Xie P, Liu T, et al. 2026. A comprehensive review of biomass torrefaction as a versatile platform for the synthesis of functional carbon materials. |
| [22] |
Zhu X, Lin L, Pang M, Jia C, Xia L, et al. 2024. Continuous and low-carbon production of biomass flash graphene. |
| [23] |
Luong DX, Bets KV, Algozeeb WA, Stanford MG, Kittrell C, et al. 2020. Gram-scale bottom-up flash graphene synthesis. |
| [24] |
Mao X, Zhao P, Liu M, Song J, Cui L, et al. 2026. Graphene-structured biochar produced via Joule heating enhances soil functions, microbial communities, and plant growth. |
| [25] |
Qiu Y, Su Y, Jing X, Xiong H, Weng D, et al. 2025. Rapid closed pore regulation of biomass-derived hard carbons based on flash joule heating for enhanced sodium ion storage. |
| [26] |
Wang F, Huang R, Yu Y, Tan S, Yuan R, et al. 2026. Sustainable production of microalgae-derived turbostratic graphene via flash Joule heating. |
| [27] |
Xu X, Xu R, Zhao Y, Wu Y, Yuan Q, et al. 2024. Boron-doped biomass carbon nanostructures as electrocatalysts for the two-electron oxygen reduction reaction. |
| [28] |
Tan Z, Mahmood F, Tian M, Li Y, Zhang Q, et al. 2026. Review of flash joule heating for the synthesis of graphene and other functional carbon materials. |
| [29] |
Chen J, Tan R, Ren J, Huang M, Wang L, et al. 2025. Polylactic acid (PLA) composites reinforced by end-capped ZnO quantum dots for enhanced mechanical, thermal, and degradation properties. |
| [30] |
Dehghani A, Arjmand M. 2025. Multi-layered rubber-based nanocomposites for absorption-dominant EMI shielding and adaptive infrared camouflage. |
| [31] |
Liu L, Sun Y, Luo H, Ao Y, Jin L. 2026. Boosting EMI Shielding and Joule Heating in Carbon Fiber Paper through lotus seedpod-inspired core-shell nickel nanospheres/ MXene hierarchical reinforcement layer. |
| [32] |
Patadia M, Quinn A, Tank M, Jolowsky C, Luiz L, et al. 2024. Enhanced multifunctionality in carbon fiber/carbon nanotube reinforced PEEK hybrid composites: superior combination of mechanical properties, electrical conductivity, and EMI shielding. |
| [33] |
Kim SI, Moon JY, Hyeong SK, Ghods S, Kim JS, et al. 2024. Float-stacked graphene – PMMA laminate. |
| [34] |
Wang J, Deng M, Chen H, Qiu W, Duan Y, et al. 2025. Minimizing energy loss by designing multifunctional solid additives to independent regulation of donor and acceptor layers for efficient LBL polymer solar cells. |
| [35] |
Biswas A, Sapkota PK, Kazibwe S, Yang S, Amiri M, et al. 2026. A semiconductor composite with high solid-state lubrication and low thermal conducting properties. |
| [36] |
Parodi A, Vagnoni M, Frontali L, Albonetti C, De Giorgio F, et al. 2023. Bifunctional heterogeneous catalysts from biomass and waste polysaccharides for the conversion of CO2 into cyclic carbonates. |
| [37] |
Nofar M, Zhu W, Park CB. 2012. Effect of dissolved CO2 on the crystallization behavior of linear and branched PLA. |
| [38] |
Promhuad K, Ebel L, Harnkarnsujarit N. 2025. Thermoplastic starch/poly(butylene adipate-co-terephthalate) blown film with maltol and ethyl maltol preserving cake quality: morphology and antimicrobial function. |
| [39] |
Yang P, Cao S, Wang Y, Fang B, Zhang S, et al. 2025. Stretch-inducing hierarchical alignment in 3D-printed scaffolds of PLA-based composite and its influence on mechanical properties. |
| [40] |
Zeng XR, Zhan R, Xiao Y, Shi LY, Yang KK, et al. 2026. Versatile lignin-enabled dynamic crosslinked networks for mechanically robust and reprocessable PBAT/PLA composites. |
| [41] |
Liu X, Liu Y, Fan M, Qian K, Ma W, et al. 2025. Development of antibacterial starch-based PLA/PBAT active packaging films for enhanced beef preservation. |
| [42] |
Liu Y, Yang M, Wang J, Yue H, Du Z, et al. 2025. Ag-CNC nanoparticles decorated thermoplastic starch/PLA/PBAT composite film with superior antibacterial property, enhanced barrier capacity and high UV-shielding effect. |
| [43] |
Liu W, Wang Y, Xiang S, Liu H. 2024. Unveiling the effect of enhanced interfacial compatibility on the mechanical properties of PLA/PBAT blends. |
| [44] |
Wu S, Du Y, Ning X, Xie F, Xie H, et al. 2026. Efficient fabrication of biodegradable polylactic acid/poly (butylene adipate-co-terephthalate)/titanium dioxide films integrating ethylene catalysis and antibacterial activity for fruits and vegetables preservation. |
| [45] |
Tran TS, Nguyen SD, Lee HJ, Tran VP. 2023. Advanced crack detection and segmentation on bridge decks using deep learning. |
| [46] |
Ye X, Wang Z, Zhang J, Wan X. 2021. Noncovalently functionalized commodity polymers as tailor-made additives for stereoselective crystallization. |
| [47] |
Gao S, Ding J, Wang W, Lu J. 2023. Carbon foam/reduced graphene oxide/paraffin composite phase change material for electromagnetic interference shielding and thermal management. |