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Yuezhan Feng

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Articles 58
Citations 444
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Recent Articles
1.
Zhou Y, Zhang W, Pan D, Li Z, Zhou B, Huang M, et al.
Nanomicro Lett . 2025 Feb; 17(1):147. PMID: 39960650
The morphological distribution of absorbent in composites is equally important with absorbents for the overall electromagnetic properties, but it is often ignored. Herein, a comprehensive consideration including electromagnetic component regulation,...
2.
Cheng Y, Cheng H, Gao J, Xue Y, Han G, Zhou B, et al.
Small . 2024 Dec; 21(7):e2409408. PMID: 39711279
Aerogel fibers uniting characteristics of both aerogels (lightweight and porosity) and fibers (flexibility and wearability) exhibit a great potential for the production of the next generation of thermal protection textiles;...
3.
Liu X, Fang M, Feng Y, Huang M, Liu C, Shen C
Macromol Rapid Commun . 2024 Oct; 45(23):e2400540. PMID: 39374340
Diglycidyl ether of bisphenol A crosslinking with glutaric anhydride is used to form the conventional "covalent adaptive network", polyether sulfone (PES) by coiling and aggregating on the adaptive network is...
4.
Zhao W, Dong J, Li Z, Zhou B, Liu C, Feng Y
Adv Sci (Weinh) . 2024 Aug; 11(38):e2406758. PMID: 39116320
Transparent electromagnetic interference (EMI) shielding is highly desired in specific visual scenes, but the challenge remains in balancing their EMI shielding effectiveness (SE) and optical transmittance. Herein, this study proposed...
5.
Liu Y, Yao A, Fu L, Xie S, Zhang Y, Xu P, et al.
Molecules . 2024 Jul; 29(13). PMID: 38999060
Incorporating outstanding flame retardancy and electromagnetic interference shielding effectiveness (EMI SE) into polymers is a pressing requirement for practical utilization. In this study, we first employed the principles of microencapsulation...
6.
Liu C, Jiang C, Shen Y, Zhou B, Liu C, Feng Y
ACS Appl Mater Interfaces . 2024 Jul; 16(29):38620-38630. PMID: 38982840
Polymers are often used as adhesives to improve the mechanical properties of flexible electromagnetic interference (EMI) shielding layered films, but the introduction of these insulating adhesives inevitably reduces the EMI...
7.
Chen K, Wang H, Shi Y, Liu M, Feng Y, Fu L, et al.
J Colloid Interface Sci . 2023 Sep; 653(Pt A):634-642. PMID: 37738936
The combination of electromagnetic interference (EMI) shielding performance and flame-retardant property is essential for applications in the field of electronics and electrics. To date, there have been few successful cases...
8.
Luo S, Li Q, Xue Y, Zhou B, Feng Y, Liu C
J Colloid Interface Sci . 2023 Sep; 652(Pt B):1645-1652. PMID: 37666196
Ultrathin MXene composite films, with their flexibility, metal-level conductivity, and multifunction compatibility, are an ideal choice for electromagnetic interference (EMI) shielding materials in future developments. Nonetheless, the dilemma between electrical...
9.
Shi Y, Nie C, Jiang S, Wang H, Feng Y, Gao J, et al.
J Colloid Interface Sci . 2023 Sep; 652(Pt B):1554-1567. PMID: 37660612
Cotton fabric composites were designed to be protected by fire safe thermoplastic polyurethane (TPU) composites for developing electromagnetic interference (EMI) shielding polymer composites with superior mechanical properties. Herein, the as-prepared...
10.
Yang X, Wang B, Ma S, Qi J, Chen Z, Feng Y, et al.
Sci Total Environ . 2023 Jun; 892:164601. PMID: 37269989
The high-efficient, eco-friendly and low-energy cleanup of viscous crude oil spills is still a global challenge. Emerging absorbents with self-heating function are promising candidates due to that they can significantly...