Maximilian Traub, M. Behrens, S. Lenzer
2026.6.9Chemistry Teacher International
Abstract
In undergraduate chemistry lab courses it is common to jointly teach students with different academic backgrounds, previous experiences, interests and career aspirations. A neglect of this diversity can lead to missing relevance of the learning content, frustration, and higher drop-out rates. Although the perceived relevance can significantly impact students’ learning outcomes, this potential has been largely overlooked. Context-based learning offers great potential to increase students’ perceived relevance by connecting the learning content to real-world contexts. However, there is a lack of suitable learning materials so far. We present a design-based research study consisting of 3 iterations giving insights into the development and evaluation process of contextualised pre-lab learning materials to increase the perceived relevance of a first-year undergraduate qualitative inorganic lab course. The materials contain battery recycling as real-world context, professional references to school and chemistry industry, chemical inquiry methods, and scientific reasoning skills. For the evaluation we involved different stakeholders and applied a mixed-methods methodology incorporating semi-structured think-aloud interviews and an online questionnaire. The results confirm a high potential of the materials. Besides our final materials, we provide implications for the design of contextualised pre-lab learning materials that make university chemistry labs more relevant for students with diverse backgrounds.
Citation format
TRAUB, Maximilian; BEHRENS, M.; LENZER, S. Making chemistry labs more relevant – development and evaluation of contextualised pre-lab materials for qualitative inorganic analysis. Chemistry Teacher International, 2026, 8(2): 361–377.