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This waste stems from three key factors: i) air losses from idle SCs arranged in arrays, ii) inadequate sealing on target surfaces leading to air leaks, and iii) damage from sharp objects resulting in leaking perforations. To overcome these challenges, in this article, a comprehensive approach is presented that involves the development of a i) self\u2010closing, ii) multi\u2010material, and iii) self\u2010healing system based on reversible elastomers cross\u2010linked via the Diels\u2013Alder (DA) reaction. The system incorporates a fully autonomous self\u2010closing mechanism to prevent energy waste in SC arrays during periods of non\u2010contact. Fluid\u2013structure interaction simulations are utilized to analyze the design. Versatility and stability are achieved by incorporating hyper\u2010flexible and stiff elastomers in a multi\u2010material design, supported by covalent DA cross\u2010links that ensure robustness through high\u2010strength multi\u2010material interfaces. 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