Hierarchical Cellular Engineering toward Exceptional Mechanical and Thermal Insulating Aerogels DOI
Yang Ding, Xin Song,

Fangjun Shao

и другие.

ACS Applied Materials & Interfaces, Год журнала: 2025, Номер unknown

Опубликована: Март 30, 2025

Aerogels are considered highly promising materials for superior thermal insulation across building, electric vehicle, and textile area. Nevertheless, the inherent deficiency in mechanical compressibility stability of sole ceramic aerogels poses significant challenges to their further application. The hybrid with an oriented cellular structure parallel walls connected by bridges orthogonal direction presented through a physical process. fibrous frames composed bacterial cellulose constructed enhanced montmorillonite nanosheets silica sols self-assembly process achieve high (>99% strain) robustness (1.015 MPa), retaining 97.8% height retention under considerable compressive strain 50% 500 cycles. Moreover, demonstrate remarkable set properties, such as being superlight (8.85 mg·cm–3 99.39% porosity), excellent insulating performance (λ = 0.0131 W·m–1·K–1), wide working temperature range (−196 200 °C), self-extinguishing, self-cleaning/hydrophobic (126.4° WCA). successful synthesis provides more opportunities design robust management.

Язык: Английский

Cryopolymerization‐Enabled Superelastic and Thermomechanically Robust Silica‐Sheathing Nanofibrous Aerogels for Solar‐Thermal Regulatory Cooling DOI Open Access

Jiahui Sun,

Yiting Zhang, Yufeng Wang

и другие.

Advanced Functional Materials, Год журнала: 2025, Номер unknown

Опубликована: Март 4, 2025

Abstract Aerogels show significant potential for subambient thermal regulation in energy‐efficient buildings and personal management under intense sunlight hot conditions owing to their unique combination of superinsulation solar scattering characteristics. However, traditional aerogels encounter challenges balancing mechanical flexibility with high‐temperature stability. Herein, a straightforward scalable cryopolymerization strategy is presented preparing superelastic thermomechanically robust silica‐sheathing nanofibrous aerogel. During cryopolymerization, cryogenic create an ice crystal‐constrained microenvironment interwoven cellulose nanofibers concentrated silicate monomers. This confined promotes the situ condensation polymerization high‐concentration silicates into porous silica nanoclusters predominantly on nanofiber surfaces, resulting aerogel composed bacterial nanocellulose cores encapsulated by sheaths. These demonstrate remarkable elasticity superinsulation, maintaining high stability even after prolonged exposure calcination at 800 °C direct 1200 butane flames. By precisely modulating mid‐infrared light, these achieve reflectivity 96.2% atmospheric window emissivity 97.5% extremely environments. Consequently, parasitic‐heat‐insulating serve as solar‐thermal regulatory cooling materials, achieving notable temperature reduction 11.4 environments conditions.

Язык: Английский

Процитировано

0

Silica Aerogels as a Promising Vehicle for Effective Water Splitting for Hydrogen Production DOI Creative Commons
Apurva S. Vadanagekar, Lubomí­r Lapčí­k, Libor Kvı́tek

и другие.

Molecules, Год журнала: 2025, Номер 30(6), С. 1212 - 1212

Опубликована: Март 8, 2025

This comprehensive review explores silica aerogels and their application in environmental remediation. Due to rapid growth the consumption of energy water resources, purification contaminated resources for use by humankind should be considered important. The primary objectives this are assess evolving landscape aerogels, preparation, drying techniques, discuss main findings from a wide range empirical studies theoretical perspectives. Based on significant amount research, provides information about aerogels’ capabilities as an adsorbent catalyst. analysis spans variety contexts generation hydrogen degradation dyes employed industry, showing better performance implications point need well-informed policies, innovative synthesis strategies, ongoing research harness full potential management.

Язык: Английский

Процитировано

0

Nanoporous aramid colloidal aerogels: design, fabrication, and performance DOI
Jing Lyu, Lishan Li, Xuetong Zhang

и другие.

Progress in Polymer Science, Год журнала: 2025, Номер unknown, С. 101945 - 101945

Опубликована: Март 1, 2025

Язык: Английский

Процитировано

0

Template-Anchored Assembly of Superelastic Polyimide Hybrid Nanofiber Aerogel for Thermal Insulation DOI

Yongkang Jin,

Feng Xiong,

Mulin Qin

и другие.

Advanced Fiber Materials, Год журнала: 2025, Номер unknown

Опубликована: Март 18, 2025

Язык: Английский

Процитировано

0

Hierarchical Cellular Engineering toward Exceptional Mechanical and Thermal Insulating Aerogels DOI
Yang Ding, Xin Song,

Fangjun Shao

и другие.

ACS Applied Materials & Interfaces, Год журнала: 2025, Номер unknown

Опубликована: Март 30, 2025

Aerogels are considered highly promising materials for superior thermal insulation across building, electric vehicle, and textile area. Nevertheless, the inherent deficiency in mechanical compressibility stability of sole ceramic aerogels poses significant challenges to their further application. The hybrid with an oriented cellular structure parallel walls connected by bridges orthogonal direction presented through a physical process. fibrous frames composed bacterial cellulose constructed enhanced montmorillonite nanosheets silica sols self-assembly process achieve high (>99% strain) robustness (1.015 MPa), retaining 97.8% height retention under considerable compressive strain 50% 500 cycles. Moreover, demonstrate remarkable set properties, such as being superlight (8.85 mg·cm–3 99.39% porosity), excellent insulating performance (λ = 0.0131 W·m–1·K–1), wide working temperature range (−196 200 °C), self-extinguishing, self-cleaning/hydrophobic (126.4° WCA). successful synthesis provides more opportunities design robust management.

Язык: Английский

Процитировано

0