» Articles » PMID: 38045733

Shape-Stabilized PEGylated Silica Aerogel-Composite As an Energy Saving Building Material

Overview
Date 2023 Dec 4
PMID 38045733
Authors
Affiliations
Soon will be listed here.
Abstract

Balancing thermal and visual comfort in buildings necessitates effective insulation to counteract heat loss and gain, especially with temperature variances. One promising approach is to combine phase change materials, such as poly(ethylene glycol) (PEG), with high-performance insulators like silica aerogel (Si). To bolster opto-thermal performance in building envelopes, we introduce a smart insulation composite material through PEG integration, i.e., PEGalyation with Si. Central to this thermal behavior is the PEG's phase change properties, which foster a shape-stabilized framework with Si through their porous confinement. Preliminary observations indicate notable capabilities of obstructing near-infrared light while preserving satisfactory visible transparency. An optimized Si@PEG composite with 5% loading of PEG has the visible range transmission of ∼92%, a decrease of ∼72% in thermal conductivity which is lower than pure glass and PEG, leading to a temperature dependent switchable hydrophobic to hydrophilic wettability characteristics. As a prototype window, the thermal performance evaluation of the synthesized composite, through experimental and computational studies, shows a decrease in indoor temperature of ∼20% with a higher temperature difference of ∼20 °C between outdoor and indoor weather conditions. This lightweight composite can act as sponge media to fill inside the double-paned window and for retrofitting existing glazing to boost the energy efficiency of buildings with facile manufacturing and scalability.

Citing Articles

Preparation and Properties of NaHPO∙12HO/Silica Aerogel Composite Phase Change Materials for Building Energy Conservation.

Lao J, Ma J, Zhao Z, Xia N, Liu J, Peng H Materials (Basel). 2024; 17(21).

PMID: 39517620 PMC: 11547611. DOI: 10.3390/ma17215350.

References
1.
Wang S, Dong Y, Li Y, Ryu K, Dong Z, Chen J . A solar/radiative cooling dual-regulation smart window based on shape-morphing kirigami structures. Mater Horiz. 2023; 10(10):4243-4250. DOI: 10.1039/d3mh00671a. View

2.
Xu C, Gao M, Yu X, Zhang J, Cheng Y, Zhu M . Fibrous Aerogels with Tunable Superwettability for High-Performance Solar-Driven Interfacial Evaporation. Nanomicro Lett. 2023; 15(1):64. PMC: 10006392. DOI: 10.1007/s40820-023-01034-4. View

3.
Wang J, Petit D, Ren S . Transparent thermal insulation silica aerogels. Nanoscale Adv. 2022; 2(12):5504-5515. PMC: 9417477. DOI: 10.1039/d0na00655f. View

4.
Zhang L, Wang A, Zhu T, Chen Z, Wu Y, Gao Y . Transparent Wood Composites Fabricated by Impregnation of Epoxy Resin and W-Doped VO Nanoparticles for Application in Energy-Saving Windows. ACS Appl Mater Interfaces. 2020; 12(31):34777-34783. DOI: 10.1021/acsami.0c06494. View

5.
Song J, Fan L . Temperature dependence of the contact angle of water: A review of research progress, theoretical understanding, and implications for boiling heat transfer. Adv Colloid Interface Sci. 2021; 288:102339. DOI: 10.1016/j.cis.2020.102339. View