论文标题

带有理想过渡温度的热色金属卤化物钙钛矿窗户

Thermochromic Metal Halide Perovskite Windows with Ideal Transition Temperatures

论文作者

Rosales, Bryan A., Kim, Janghyun, Wheeler, Vincent M., Crowe, Laura E., Prince, Kevin J., Mirzokarimov, Mirzo, Daligault, Tom, Duell, Adam, Wolden, Colin A., Schelhas, Laura T., Wheeler, Lance M.

论文摘要

全球城市中心负责大量能源消耗和二氧化碳排放。随着城市中心的不断增长,玻璃作为城市建筑中覆层材料的普及是一个令人震惊的趋势。动态窗户通过在寒冷的季节中被动加热来减少建筑物中的加热和冷却负载,并在炎热的季节减轻太阳热量的增加。在这项工作中,我们开发了一种介绍性建筑能源模型,该模型表明,当使用热色窗时,建筑物的能源消耗减少。在美国八个不同​​的气候区域中实现了储蓄。我们使用该模型来确定基于金属卤化物钙钛矿材料的热色窗的理想临界过渡温度为20至27.5°C。理想的过渡温度是在由钙钛矿晶体和相邻储层相组成的复合金属卤化物钙钛矿膜中实验实现的。过渡温度是通过与碘化甲基甲醇而不是水的共同相结合来控制的,并根据储层相的氢键化学定制化学。基于金属卤化物钙钛矿的热色窗代表了减轻渴望建筑物的影响的明显机会。

Urban centers across the globe are responsible for a significant fraction of energy consumption and CO2 emission. As urban centers continue to grow, the popularity of glass as cladding material in urban buildings is an alarming trend. Dynamic windows reduce heating and cooling loads in buildings by passive heating in cold seasons and mitigating solar heat gain in hot seasons. In this work, we develop a mesoscopic building energy model that demonstrates reduced building energy consumption when thermochromic windows are employed. Savings are realized across eight disparate climate zones of the United States. We use the model to determine the ideal critical transition temperature of 20 to 27.5 °C for thermochromic windows based on metal halide perovskite materials. Ideal transition temperatures are realized experimentally in composite metal halide perovskite film composed of perovskite crystals and an adjacent reservoir phase. The transition temperature is controlled by co-intercalating methanol, instead of water, with methylammonium iodide and tailoring the hydrogen-bonding chemistry of the reservoir phase. Thermochromic windows based on metal halide perovskites represent a clear opportunity to mitigate the effects of energy-hungry buildings.

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