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Enzymes as Fuel Producers

Series
Chemistry for the Future: Solar Fuels
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Growing energy demand worldwide is a crucial challenge for chemists. Suzannah Hexter, Armstrong Group, shows how, with the help of enzymes, the principles of photosynthesis may be artificially exploited and improved to provide a clean energy resource.

Episode Information

Series
Chemistry for the Future: Solar Fuels
People
Suzannah Hexter
Keywords
solar fuels
enzymes
sun
Energy
Photosynthesis
sustainable
climate change
fuel
hydrogen
bacteria
solar power
Department: Department of Chemistry
Date Added: 19/07/2013
Duration: 00:04:34

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Introduction to Solar Fuels

Series
Chemistry for the Future: Solar Fuels
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In an 'Oxford tutorial' style podcast, Professor Fraser Armstrong introduces the concept of artificial photosynthesis: coupling a light harvesting material with a fuel producer in order to generate storable energy from sunlight.

Episode Information

Series
Chemistry for the Future: Solar Fuels
People
Fraser Armstrong
Keywords
solar fuels
enzymes
sun
Energy
sustainable
fuel
hydrogen
Photosynthesis
solar power
Department: Department of Chemistry
Date Added: 19/07/2013
Duration: 00:03:23

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Chemistry for the Future: Solar Fuels

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Chemistry for the Future: Solar Fuels
It was here in Oxford, in the 1600s, that great minds such as Hooke, Boyle, Willis and Wren laid the foundations of modern experimental science. Like their famous forebears, today's Oxford scientists continue to undertake world-leading research: making fundamental new discoveries and applying cutting-edge knowledge to the major societal and technological challenges of the day. The research happening right now in the Department of Chemistry is uniquely poised to have a major impact on everything from our health to our energy sources - in other words, it is enabling our shared future. To read more about our research, please visit http://www.chem.ox.ac.uk/researchthemes.asp.
This series focuses on a potential solution to the energy crisis: using artificial photosynthesis to generate 'clean' hydrogen fuel from sunlight and water. This interdisciplinary research incorporates elements of chemistry and biology, and aims to mimic and improve processes used in nature by green plants and pathogenic bacteria.
Armstrong Group: http://armstrong.chem.ox.ac.uk/
Solar Fuels: http://solarfuels.tumblr.com/
This research was also featured at the Royal Society Summer Exhibition 2013 http://sse.royalsociety.org/2013/exhibits/solar-fuels/

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Shot at Dawn

Series
First World War: New Perspectives
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How a contemporary photographer is addressing one of the conflict's most sensitive topics.
To commemorate the centennial of the First World War, the Ruskin School of Drawing and Fine Art has commissioned the young British photographer Chloe Dewe Mathews to produce a new body of work, the outcomes of which will be the subject of a major exhibition and accompanying publication. In this interview Chloe discusses how her photographic collection is addressing one of the conflict's most sensitive topics - the execution of troops for cowardice or desertion.
Creative Commons Licence
Creative Commons Attribution-Non-Commercial-Share Alike 2.0 UK (BY-NC-SA): England & Wales; https://creativecommons.org/licenses/by-nc-sa/2.0/uk/

Episode Information

Series
First World War: New Perspectives
People
Chloe Dewe Matthews
Keywords
photography
#ww1
first world war
great war
art
history
world war one
Department: IT Services
Date Added: 18/07/2013
Duration: 00:07:30

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Democratic Statehood in International Law

Series
Public International Law Discussion Group (Part I) and Annual Global Justice Lectures
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Dr Jure Vidmar, University of Oxford - 2 May 2013.
2013-05-02.

Episode Information

Series
Public International Law Discussion Group (Part I) and Annual Global Justice Lectures
People
Jure Vidmar
Keywords
law
democratic statehood
international law
democracy
Department: Faculty of Law
Date Added: 18/07/2013
Duration: 00:44:30

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Conclusion: Strange Substances and Structures

Series
Chemistry for the Future: Strange Substances and Structures
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Imagine being able to transform an insulating material into an electrical conductor just by touching it with a magnet.
Materials chemist Dr Andrew Goodwin is using the concepts of order and disorder to design new materials with amazing functionality that could transform our future in ways limited only by our imagination.

Episode Information

Series
Chemistry for the Future: Strange Substances and Structures
People
Andrew Goodwin
Keywords
mechanical properties
insulators
structures
materials
conductors
crystals
disorder
order
Department: Department of Chemistry
Date Added: 18/07/2013
Duration: 00:10:53

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Crystals, Hydrothermal Bombs, and the Study of Strange Mechanical Properties

Series
Chemistry for the Future: Strange Substances and Structures
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Andrew Cairns and Ines Collings, DPhil students in the Goodwin Group, explain how they make single crystals in the lab and study their unusual properties.
By showing how to break the rules governing 'normal' materials, this research could lead to the design of brand new and useful substances in future.

Episode Information

Series
Chemistry for the Future: Strange Substances and Structures
People
Andrew Cairns
Ines Collings
Keywords
mechanical properties
materials
crystals
inorganic
properties
x-ray crystallography
Department: Department of Chemistry
Date Added: 18/07/2013
Duration: 00:11:15

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Supercapacitors, Ionic Liquids, and Implications for Sustainable Energy

Series
Chemistry for the Future: Strange Substances and Structures
Embed
From smart phones to electric cars, batteries and energy storage devices are vital. Dr Nico Cousens is studying ionic liquid supercapacitors - a next generation technology with the potential to transform energy storage and power the cars of the future.

Episode Information

Series
Chemistry for the Future: Strange Substances and Structures
People
Nico Cousens
Keywords
science
Energy
supercapacitors
electric cars
batteries
energy storage
Department: Department of Chemistry
Date Added: 18/07/2013
Duration: 00:06:29

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Chemistry for the Future: Strange Substances and Structures

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Chemistry for the Future: Strange Substances and Structures
It was here in Oxford, in the 1600s, that great minds such as Hooke, Boyle, Willis and Wren laid the foundations of modern experimental science. Like their famous forebears, today's Oxford scientists continue to undertake world-leading research: making fundamental new discoveries and applying cutting-edge knowledge to the major societal and technological challenges of the day. The research happening right now in the Department of Chemistry is uniquely poised to have a major impact on everything from our health to our energy sources - in other words, it is enabling our shared future. To read more about our research, please visit http://www.chem.ox.ac.uk/researchthemes.asp.
This series focuses on current physical and materials chemists as they explore a range of 'strange' materials with unusual properties and functionality. In the future, these materials may revolutionize areas as diverse as friction and energy storage, and inspire the design of new substances with properties we can't yet imagine.
Goodwin Group: http://goodwin.chem.ox.ac.uk/goodwin/HOME/HOME.html
Perkin Group: http://research.chem.ox.ac.uk/susan-perkin.aspx

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Patent Law

Series
Careers in Chemistry: Beyond Academia
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Dr John Fisher (Oriel College, 2001), talks about his role as a patent attorney, and offers advice for students who are considering a similar career. It's all about advocacy!

Episode Information

Series
Careers in Chemistry: Beyond Academia
People
John Fisher
Keywords
law
University of Oxford
science
industry
commercialisation
advocacy
inventions
patent law
chemistry
Department: Department of Chemistry
Date Added: 17/07/2013
Duration: 00:18:02

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