IUPAC Top Ten Emerging Technologies in Chemistry 2021

Author:

Gomollón-Bel Fernando

Abstract

Abstract IUPAC thrives to boost the impact of chemistry around the world. Recently, it established a new initiative—the Top Ten Emerging Technologies in Chemistry—to showcase the tremendous importance of the chemical sciences by highlighting developments on the verge of becoming game-changing commercial breakthroughs [1]. Some have been truly transformational for our society, such as RNA vaccines and rapid tests, both key technologies to enable a smooth transition to the new normal after the COVID-19 pandemic. This year, the Top Ten efforts continue—featuring a brand-new logo and further actions to disseminate and promote the project beyond this publication. The new selection of emerging technologies gathers both well-established, high-technology readiness level (TRL) applications and ground-breaking opportunities for the chemical industry. Of course, many of them still address the ongoing coronavirus crisis, focusing on new pharmaceutical solutions to prevent the spread of pathogens like SARS-CoV-2. Moreover, many tackle the climate crisis and provide new roadmaps to achieve the United Nations’ Sustainable Development Goals (SDGs) [2]. The consequences of global warming are here—heatwaves, floods, and wildfires devastate our planet constantly. Chemistry will provide pivotal tools towards a sustainable future [3], many included in this singular selection. IUPAC experts have selected the Top Ten Emerging Technologies in Chemistry 2021—ten ideas to catalyse industrial innovations and transform our world.

Publisher

Walter de Gruyter GmbH

Subject

Community and Home Care

Reference41 articles.

1. IUPAC (2019). “Top Ten Emerging Technologies in Chemistry”. https://iupac.org/what-we-do/top-ten/ Accessed on 19/07/2021.

2. United Nations (2015). “Sustainable Development Goals”. https://sdgs.un.org/goals

3. Matlin, S.A., et al. Nature Chem. 2015, 7, 941.

4. NIST (2018). “Blockchain Technology Overview”. NISTIR 8202, https://doi.org/10.6028/NIST.IR.8202 Accessed on 19/07/2021.

5. Hanson-Heine, M.W.D. and Ashmore, A.P. Chem. Sci. 2020, 11, 4464.

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