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Chem. 2024 Nov 14;10(11):3309-3322. doi: 10.1016/j.chempr.2024.06.033 Q119.12024

Self-Activated Energy Release Cascade from Anthracene-Based Solid-State Molecular Solar Thermal Energy Storage Systems

基于苊烯的固态分子太阳能热储能系统的自发活化放能反应 翻译改进

Subhayan Chakraborty  1, Han P Q Nguyen  1, Junichi Usuba  1, Ji Yong Choi  2, Zhenhuan Sun  1, Cijil Raju  1, Gustavo Sigelmann  1, Qianfeng Qiu  1, Sungwon Cho  1, Stephanie M Tenney  1, Katherine E Shulenberger  1, Klaus Schmidt-Rohr  1, Jihye Park  2, Grace G D Han  1

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作者单位

  • 1 Department of Chemistry, Brandeis University, 415 South Street, Waltham, MA 02453, USA.
  • 2 Department of Chemistry, University of Colorado Boulder, 215 UCB, Boulder, CO 80309, USA.
  • DOI: 10.1016/j.chempr.2024.06.033 PMID: 39830017

    摘要 Ai翻译

    We introduce donor-acceptor substituted anthracenes as effective molecular solar thermal energy storage compounds that operate exclusively in the solid state. The donor-acceptor anthracenes undergo visible light-induced [4+4] cycloaddition reaction, producing metastable cycloadducts, dianthracenes with quaternary carbons, and storing photon energy. The triggered cycloreversion of dianthracenes to anthracenes discharges the stored energy as heat in the order of 100 kJ/mol (200 J/g). The series of compounds displays remarkable self-heating, or cascading heat release, upon the initial triggering. Such self-activated energy release is enabled by the large energy storage in dianthracenes, low activation energy for their thermal reversion, and effective heat transfer to unreacted molecules in the solid state. This process mirroring the self-ignition of fossil fuels opens up opportunities to use dianthracenes as effective and renewable solid-state fuels that can release energy rapidly and completely upon initial activation.

    Keywords:self-activated energy release; energy storage systems

    Copyright © Chem. 中文内容为AI机器翻译,仅供参考!

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    期刊名:Chem

    缩写:CHEM-US

    ISSN:2451-9294

    e-ISSN:

    IF/分区:19.1/Q1

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    Self-Activated Energy Release Cascade from Anthracene-Based Solid-State Molecular Solar Thermal Energy Storage Systems