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35801por S. Ghara, K. Geirhos, L. Kuerten, P. Lunkenheimer, V. Tsurkan, M. Fiebig, I. Kézsmárki“... ferroelectric GaV4S8, extending the source of phenomena beyond the realm of oxide electronics....”
Publicado 2021
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35802por Zhuolu Li, Shengchun Shen, Zijun Tian, Kyle Hwangbo, Meng Wang, Yujia Wang, F. Michael Bartram, Liqun He, Yingjie Lyu, Yongqi Dong, Gang Wan, Haobo Li, Nianpeng Lu, Jiadong Zang, Hua Zhou, Elke Arenholz, Qing He, Luyi Yang, Weidong Luo, Pu Yu“...Ionic substitution is a useful way to manipulate structural, electronic, magnetic phase transitions...”
Publicado 2020
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35803por Heechan Kim, Woojin Park, Younghun Kim, Michael Filatov, Cheol Ho Choi, Dongwhan Lee“...Commonly, large π-conjugated systems facilitate low-energy electronic transitions. Here...”
Publicado 2021
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35804por Kentaro Ueda, Taekoo Oh, Bohm-Jung Yang, Ryoma Kaneko, Jun Fujioka, Naoto Nagaosa, Yoshinori Tokura“...The interplay between multiple electronic interactions in solid promotes the emergence of exotic...”
Publicado 2017
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35805por J. P. Sun, K. Matsuura, G. Z. Ye, Y. Mizukami, M. Shimozawa, K. Matsubayashi, M. Yamashita, T. Watashige, S. Kasahara, Y. Matsuda, J. -Q. Yan, B. C. Sales, Y. Uwatoko, J. -G. Cheng, T. Shibauchi“...The relationship between electronic ordering and superconductivity, crucial to understand high-Tc...”
Publicado 2016
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35806“... the thermal regime can be overcome, achieving a purely electronic transition on ultrafast timescales....”
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35807por Henry R. Kranzler, Hang Zhou, Rachel L. Kember, Rachel Vickers Smith, Amy C. Justice, Scott Damrauer, Philip S. Tsao, Derek Klarin, Aris Baras, Jeffrey Reid, John Overton, Daniel J. Rader, Zhongshan Cheng, Janet P. Tate, William C. Becker, John Concato, Ke Xu, Renato Polimanti, Hongyu Zhao, Joel Gelernter“... diagnosis from electronic health records of 274,424 individuals and identify a total of 18 associated loci....”
Publicado 2019
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35808“... momentum transfer from photons to electrons and observe a time delay in the linear momentum transfer during...”
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35809“... migrate via interstitial sites and undergo a redox reaction to form molecular iodine and free electrons....”
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35810por Hubert Maier, Johannes Ziegler, Ralf Fischer, Dmitriy Kozlov, Ze Don Kvon, Nikolay Mikhailov, Sergey A. Dvoretsky, Dieter Weiss“..., Maier et al. report pronounced geometric resistance resonances of high-mobility Dirac electrons...”
Publicado 2017
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35811por Long Gu, Hongwei Wu, Huili Ma, Wenpeng Ye, Wenyong Jia, He Wang, Hongzhong Chen, Nan Zhang, Dongdong Wang, Cheng Qian, Zhongfu An, Wei Huang, Yanli Zhao“... in information encryption, organic electronics and bioelectronics. Here the authors design a color-tunable...”
Publicado 2020
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35812por Junming Li, Hai-Lei Cao, Wen-Bin Jiao, Qiong Wang, Mingdeng Wei, Irene Cantone, Jian Lü, Antonio Abate“... times more dangerous than lead-containing electronics while tin perovskites are much less bioavailable....”
Publicado 2020
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35813por Valentin Dubois, Shyamprasad N. Raja, Pascal Gehring, Sabina Caneva, Herre S. J. van der Zant, Frank Niklaus, Göran Stemme“...The field of molecular electronics is currently held back by the lack of scalability...”
Publicado 2018
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35814por Tao Zhang, Haoyuan Qi, Zhongquan Liao, Yehu David Horev, Luis Antonio Panes-Ruiz, Petko St. Petkov, Zhe Zhang, Rishi Shivhare, Panpan Zhang, Kejun Liu, Viktor Bezugly, Shaohua Liu, Zhikun Zheng, Stefan Mannsfeld, Thomas Heine, Gianaurelio Cuniberti, Hossam Haick, Ehrenfried Zschech, Ute Kaiser, Renhao Dong, Xinliang Feng“...Large area and homogeneous PANI thin films are important in high-performance organic electronics...”
Publicado 2019
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35815Probing ultrafast ππ*/nπ* internal conversion in organic chromophores via K-edge resonant absorptionpor T. J. A. Wolf, R. H. Myhre, J. P. Cryan, S. Coriani, R. J. Squibb, A. Battistoni, N. Berrah, C. Bostedt, P. Bucksbaum, G. Coslovich, R. Feifel, K. J. Gaffney, J. Grilj, T. J. Martinez, S. Miyabe, S. P. Moeller, M. Mucke, A. Natan, R. Obaid, T. Osipov, O. Plekan, S. Wang, H. Koch, M. Gühr“... selectivity of soft X-ray absorption to sensitively follow the ultrafast ππ*/nπ* electronic relaxation...”
Publicado 2017
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35816“...Well-developed prototype interface materials for electronics thermal management are limited to a...”
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35817por Jiangxu Li, Jiaxi Liu, Stanley A. Baronett, Mingfeng Liu, Lei Wang, Ronghan Li, Yun Chen, Dianzhong Li, Qiang Zhu, Xing-Qiu Chen“... TP materials compared to electronic materials. Here, the authors present a high-throughput screening...”
Publicado 2021
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35818por Muñoz Losa, Aurora“... differences related with electronic transitions and crossing points between potential energy surfaces...”
Publicado 2006
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35819por Shiheng Liang, Huaiwen Yang, Pierre Renucci, Bingshan Tao, Piotr Laczkowski, Stefan Mc-Murtry, Gang Wang, Xavier Marie, Jean-Marie George, Sébastien Petit-Watelot, Abdelhak Djeffal, Stéphane Mangin, Henri Jaffrès, Yuan Lu“...MoS2 is a promising two-dimensional candidate for opto-electronic and spintronic applications. Here...”
Publicado 2017
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35820“...Exciton coupling between organic dyes is important for opto-electronic and photovoltaic devices...”
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