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Nanotechnology Now - Press Release: Conductive nature in crystal structures revealed at magnification of 10 million times: University of Minnesota study opens up possibilities for new transparent materials that conduct electricity


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Home > Press > Conductive nature in crystal structures revealed at magnification of 10 million times: University of Minnesota study opens up possibilities for new transparent materials that conduct electricity
University of Minnesota Professor K. Andre Mkhoyan and his team used analytical scanning transmission electron microscopy (STEM), which combines imaging with spectroscopy, to observe metallic properties in the perovskite crystal barium stannate (BaSnO3). The atomic-resolution STEM image, with a BaSnO3 crystal structure (on the left), shows an irregular arrangement of atoms identified as the metallic line defect core.
CREDIT
Mkhoyan Group, University of Minnesota
Abstract:
In groundbreaking materials research, a team led by University of Minnesota Professor K. Andre Mkhoyan has made a discovery that blends the best of two sought-after qualities for touchscreens and smart windows transparency and con ....

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Conductive nature in crystal structures revealed at magnification of 10 million times


January 15, 2021
Using advanced analytical scanning transmission electron microscopy (STEM) at a magnification of 10 million times, University of Minnesota researchers were able to isolate and image the structure and composition of the metallic line defect in a perovskite crystal BaSnO3. This image shows the atomic arrangement of both the BaSnO3 crystal (on the left) and the metallic line defect.
In groundbreaking materials research, a team led by University of Minnesota Professor K. Andre Mkhoyan has made a discovery that blends the best of two sought-after qualities for touchscreens and smart windows transparency and conductivity. 
The researchers are the first to observe metallic lines in a perovskite crystal. Perovskites abound in the Earth’s center, and barium stannate (BaSnO3) is one such crystal. However, it has not been studied extensively for metallic properties because of the prevalence of more conductive materials on the planet like metals or se ....

United States , Bharat Jalan , Abhinav Prakash , K Andre Mkhoyan , Jong Seok Jeong , Maryt Johnson Mayon , Turan Birol , Hwanhui Yun , Mehmet Topsakal , University Of Minnesota Twin Cities , Department Of Chemical Engineering , University Of Minnesota College Science , National Science Foundation , National Institute Of Standards , American Association For The Advancement Of Science , University Of Minnesota , Argonne National Laboratory , Brookhaven National Laboratory , University Of Minnesota Materials Research Science , University Of Minnesota Characterization Facility , University Of Minnesota Ph , University Of Minnesota Professork Andre Mkhoyan , Engineering Center , Semiconductor Research Corporation , Office Of Scientific Research , Minnesota Professor ,