Jess Wade explains the concept of chirality, and how it might revolutionise technological innovation.
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Watch the Q&A here (exclusively for our Science Supporters): • Q&A: How materials science could revolutio…
This lecture was recorded at the Ri on 14 June 2025.
Imagine if we could keep our mobile phones on full brightness all day, without worrying about draining our battery? Or if we could create a fuel cell that used sunlight to convert water into hydrogen and oxygen? Or if we could build a low-power sensor that could map out brain function?
Whether it’s optoelectronics, spintronics or quantum, the technologies of tomorrow are underpinned by advances in materials science and engineering. For example, chirality, a symmetry property of mirror-image systems that cannot be superimposed, can be used to control the spin of electrons and photons. Join functional materials scientist Jess Wade as she explores how advances in chemistry, physics and materials offer new opportunities in technological innovation.
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Dr Jess Wade is a Royal Society University Research Fellow and Lecturer in Functional Materials in the Department of Materials at Imperial College London. Her research considers new materials for optoelectronic devices and quantum technologies, with a focus on chiral systems and the identification of strategies to control photon and electron spin. Outside of the lab, Jess is involved with several science communication and outreach initiatives. She is committed to improving diversity in science, both online and offline.
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