2020
DOI: 10.1002/adma.202000870
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Switchable Cavitation in Silicone Coatings for Energy‐Saving Cooling and Heating

Abstract: Space cooling and heating currently result in huge amounts of energy consumption and various environmental problems. Herein, a switching strategy is described for efficient energy‐saving cooling and heating based on the dynamic cavitation of silicone coatings that can be reversibly and continuously tuned from a highly porous state to a transparent solid. In the porous state, the coatings can achieve efficient solar reflection (93%) and long‐wave infrared emission (94%) to induce a subambient temperature drop o… Show more

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Cited by 181 publications
(186 citation statements)
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References 37 publications
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“…Zhao et al developed a bilayer silicone coating consisting a switchable light‐transmitting layer and a photothermal carbon black‐embedded layer. [ 146 ] When scratched or stretched, the switchable light‐transmitting layer became opaque due to the formation of cavities in the PDMS matrix. It could achieve efficient solar reflection (93%) and long‐wave infrared emission (94%) to bring a temperature drop.…”
Section: Sustainable Applications Of Photothermal Materialsmentioning
confidence: 99%
“…Zhao et al developed a bilayer silicone coating consisting a switchable light‐transmitting layer and a photothermal carbon black‐embedded layer. [ 146 ] When scratched or stretched, the switchable light‐transmitting layer became opaque due to the formation of cavities in the PDMS matrix. It could achieve efficient solar reflection (93%) and long‐wave infrared emission (94%) to bring a temperature drop.…”
Section: Sustainable Applications Of Photothermal Materialsmentioning
confidence: 99%
“…Especially in the context of energy saving and solar modulation, thermo‐responsive materials are of key interest. [ 63 , 64 , 65 , 66 , 67 , 68 , 69 , 70 ] Heating and cooling systems in any vehicle, storage place, or indoor space require high amounts of energy, cause environmental problems (toxic cooling substances, pollution)[ 71 , 72 ] or may result in health issues (dry skin, headaches, colds). [ 73 , 74 ] Therefore, smart thermo‐responsive glazing systems along window coatings have been developed.…”
Section: Stimuli‐responsive Self‐reporting Polymeric Materialsmentioning
confidence: 99%
“…Similar phase transitions from transparent to translucent (or vice versa) were obtained in liquid‐crystal siloxane polymers, [66] polyacrylamide hydrogels,[ 67 , 68 ] nanoparticle–polymer composites, [69] or dynamic porous silicon films. [70] Clearly, these materials are promising for future developments of smart, thermo‐responsive systems for solar control coatings and windows, displays, or sensors with tunable thermal and optical properties.…”
Section: Stimuli‐responsive Self‐reporting Polymeric Materialsmentioning
confidence: 99%
“…[61] Vorallem im Zusammenhang mit Energieeinsparung und Solarmodulation sind thermoresponsive Materialien von zentralem Interesse. [63][64][65][66][67][68][69][70] Heiz-und Kühlsysteme in jedem Fahrzeug,L agerort oder Innenraum bençtigen hohe Energiemengen, verursachen Umweltprobleme (toxische Kühlmittel, Verschmutzung) [71,72] oder verursachen eventuell Gesundheitsprobleme (trockene Haut, Kopfschmerzen, Erkältung). [73,74] Ausd iesem Grund wurden intelligente thermoresponsive Verglasungssysteme und Fensterbeschichtungen entwickelt.…”
Section: Thermoresponsive Materialienunclassified
“…¾hnliche Phasenübergänge von transparent zu transluzent (oder umgekehrt) wurden in flüssigkristallinen Siloxanpolymeren, [66] Polyacrylamid-Hydrogelen, [67,68] Nanopartikel-Polymer-Verbundstoffen [69] oder dynamischen porçsen Siliciumfilmen erzielt. [70] Somit sind diese Materialien sicherlich nützlich fürz ukünftige Entwicklungen intelligenter,t hermoresponsiver Systeme fürS onnenschutzbeschichtungen und Fenster,D isplays oder Sensoren mit einstellbaren thermischen und optischen Eigenschaften.…”
Section: Thermoresponsive Materialienunclassified