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Organometallic Catalysis in Sustainable Chemistry · LearnSpace
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Organometallic Catalysis in Sustainable Chemistry

Курс от Technical University of Denmark (DTU)
Средний≈ 10.9 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

Organometallic Catalysis in Sustainable Chemistry offers foundational knowledge to tackle sustainability challenges from a chemical perspective, primarily through homogeneous organometallic catalysis. The course centers around dihydrogen (H₂) as the key sustainability molecule, utilizing it in various roles, such as in processes that produce or consume dihydrogen. With these tools, the course explores methods for storing H₂, upgrading biomass, and utilizing CO₂ to create industrially valuable commodity chemicals. Highly beneficial and engaging for students, the course follows a logical progression. It starts with the basics of organometallic chemistry and then applies this knowledge to catalysis, with a focus on sustainability. By completing the course, students will gain essential tools to independently explore organometallic catalysis in sustainable chemistry. This course is designed for students or professionals, typically with a Bachelor's degree in chemistry or equivalent relevant industrial experience, who have an interest in homogeneous catalysis and sustainability.

Навыки, которые вы освоите

CoordinationChemical EngineeringSustainable SystemsSustainable TechnologiesChemistrySustainable Development

Программа курса

4 модулей · 44 учебных материалов

01Introduction2 материалов
Welcome letterЧтениеWelcomeВидео
02Module 1: Fundamentals on organometallics12 материалов
Module 1 overviewЧтениеVideo M1.1: Transition metals and the periodic table

Учитесь у экспертов

Martin Nielsen

Преподаватель курса

Organometallic Catalysis in Sustainable Chemistry
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Обучение на Coursera

≈ 10.9 ч

4 модулей

Язык: Английский

Часть программы вашего университета
Видео
Video M1.2: Transition metals and electronsВидео
Video M1.3: Transition metals and geometriesВидео
Assignment M1.1Задание
Video M1.4: Transition metals and ligands 1Видео
Video M1.5: Transition metals and ligands 2Видео
Video M1.6: Transition metals and ligands 3Видео
Assignment M1.2Задание
Video M1.7: Elementary steps in organometallics 1Видео
Video M1.8: Elementary steps in organometallics 2 Видео
Assignment M1.3Задание
03Module 2: Reactivity of H2 and organic substrates with organometallics11 материалов
Module 2 overviewЧтениеVideo M2.1: Transition metals and hydrogenВидеоVideo M2.2: Transition metals and dihydrogenВидеоAssignment M2.1ЗаданиеVideo M2.3: Catalysis involving H2ВидеоVideo M2.4: HydrogenationВидеоVideo M2.5: DehydrogenationВидеоAssignment M2.2ЗаданиеVideo M2.6: Transfer hydrogenationВидеоVideo M2.7: Hydrogen autotransferВидеоAssignment M2.3Задание
04Module 3: H2 and renewable substrates in organometallic catalytic green chemistry19 материалов
Module 3 overviewЧтениеVideo M3.1: Hydrogenation 1 - alkyl levulinates to GVLВидеоVideo M3.2: Hydrogenation 2 - levulinic acid to GVLВидеоVideo M3.3: Hydrogenation 3 - furanics to furanic alcoholsВидеоVideo M3.4: Hydrogenation 4 - furfural to GVLВидеоVideo M3.5: Hydrogenation 5 - sugars and raw biomas to GVLВидеоAssignment M3.1ЗаданиеVideo M3.6: An introduction to liquid organic hydrogen carriersВидеоVideo M3.7: CO2 hydrogenation to formic AcidВидеоVideo M3.8: Dehydrogenation of formic AcidВидеоVideo M3.9: Acceptorless alcohol dehydrogenationВидеоAssignment M3.2ЗаданиеVideo M3.10: Transfer hydrogenation 1 - imines and enamines to aminesВидеоVideo M3.11: Transfer hydrogenation 2 - furanics to furanic alcoholsВидеоVideo M3.12: Transfer hydrogenation 3 - Ru-PNP nitrosyl complexesВидеоVideo M3.13: Hydrogen autotransfer 1 - ethanol upgrading to 1-butanolВидеоVideo M3.14: Hydrogen autotransfer 2 - ethanol upgrading to 2-butanolВидеоAssignment M3.3ЗаданиеGraded examЗадание