Photoprocesses in chemical education. Key experiments for core concepts

Q4 Social Sciences
Michael Walter Tausch, Nico Meuter, Sebastian Spinnen
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引用次数: 5

Abstract

Due to the “big five” challenges in the 21st Century related to the terms of energy, food, water, mobility and climate, mankind has to replace energy from fossil fuels step by step by renewable energies. Between them, solar energy is definitely the most abundant and clean. This is a major, but not the only reason for the inclusion of photoprocesses into chemical education. In this article we present an experimental approach to the basic concept suitable for teaching all phenomena involving light in a reasonable approximation. Updated experiments demonstrating the down conversion of light by fluorescence and room-temperature phosphorescence as well as aggregation induced emission and rigidification induced luminescence are described. In order to use these experiments for teaching basic concepts in photochemistry, a simple version of an energy level model, and an extended version, containing vibrational states, are proposed.

化学教育中的光处理。核心概念的关键实验
由于21世纪能源、粮食、水、交通和气候等“五大”挑战,人类必须逐步用可再生能源取代化石燃料。在它们之间,太阳能绝对是最丰富和清洁的。这是将光过程纳入化学教育的主要原因,但不是唯一的原因。在这篇文章中,我们提出了一种实验方法来解释基本概念,这种基本概念适用于以合理的近似来教授所有涉及光的现象。更新的实验证明了光的荧光和室温磷光的下转换,以及聚集诱导发射和凝固诱导发光。为了将这些实验用于光化学基本概念的教学,我们提出了能级模型的一个简单版本,以及包含振动态的扩展版本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Educacion Quimica
Educacion Quimica Social Sciences-Education
CiteScore
0.70
自引率
0.00%
发文量
78
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