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Toward sustainable energy applications with breakthrough in proton conductors

Toward sustainable energy applications with breakthrough in proton conductors
sciencedaily.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from sciencedaily.com Daily Mail and Mail on Sunday newspapers.

Kei Saito , Pcfcs Pcecs , Masatomo Yashima , Nature Communications , Tokyo Institute Of Technology Tech , Professor Masatomo Yashima , Tokyo Institute , Tokyo Tech ,

Achieving Breakthrough in Proton Conductor Design

Tokyo Tech scientists showcased that donor doping within a mother material containing disordered intrinsic oxygen vacancies, as opposed to the commonly employed acceptor doping in vacancy-free materials, significantly amplifies the conductivity and durability of perovskite-type proton conductors within the temperature range of 250–400 ?. ....

Masatomo Yashima , Pcfcs Pcecs , Skyla Baily , Kei Saito , Tokyo Institute Of Technology Tech , Energy Storage Technologies Industry , Energy Storage Technologies , Nature Communications , Tokyo Institute Of Technology , Tokyo Institute , Storage Technologies , Storage Technologies Industry Focus , Professor Masatomo Yashima , Tokyo Tech ,

Breakthrough in Proton Conductors Boosts Sustainable Energy

Breakthrough in Proton Conductors Boosts Sustainable Energy
miragenews.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from miragenews.com Daily Mail and Mail on Sunday newspapers.

Pcfcs Pcecs , Masatomo Yashima , Kei Saito , Nature Communications , Tokyo Institute Of Technology Tech , Tokyo Tech , Professor Masatomo Yashima , Tokyo Institute ,

Breakthrough in Proton Conductors Boosts Sustainable Energy Apps

Breakthrough in Proton Conductors Boosts Sustainable Energy Apps
miragenews.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from miragenews.com Daily Mail and Mail on Sunday newspapers.

Masatomo Yashima , Kei Saito , Pcfcs Pcecs , Nature Communications , Tokyo Institute Of Technology Tech , Professor Masatomo Yashima , Tokyo Institute , Tokyo Tech ,

Toward sustainable energy applications with b

<p>Donor doping into a mother material with disordered intrinsic oxygen vacancies, instead of the widely used strategy of acceptor doping into a material without oxygen vacancies, can greatly enhance the conductivity and stability of perovskite-type proton conductors at intermediate and low temperatures of 250&ndash;400 &deg;C, as demonstrated by Tokyo Tech scientists (e.g. 10 mS/cm at 320 &deg;C). This innovative approach provides a new design direction for proton conductors for fuel cells and electrolysis cells.</p>
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Masatomo Yashima , Kei Saito , Pcfcs Pcecs , Method Of Research , Tokyo Institute Of Technology Tech , Nature Communications , Tokyo Institute Of Technology , Tokyo Tech , Professor Masatomo Yashima , Tokyo Institute , Proton Conductivity , Disordered Intrinsic Oxygen ,