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作者:Zhang, Wenqiang; Jiang, Hong; Liu, Yikuan; Hu, Yue; Palakkal, Athulya Surendran; Zhou, Yujie; Sun, Meng; Du, Enping; Gong, Wei; Zhang, Qun; Jiang, Jianwen; Dong, Jinqiao; Liu, Yan; Li, Dehui; Zhu, Yihan; Cui, Yong; Duan, Xiangfeng
作者单位:Shanghai Jiao Tong University; Shanghai Jiao Tong University; Zhejiang University of Technology; Zhejiang University of Technology; Huazhong University of Science & Technology; Huazhong University of Science & Technology; National University of Singapore; Chinese Academy of Sciences; University of Science & Technology of China, CAS; CAS Center for Excellence in Quantum Information & Quantum Physics; Chinese Academy of Sciences; University of Science & Technology of China, CAS; Chinese Academy of Sciences; University of Science & Technology of China, CAS; Hefei National Laboratory; University of California System; University of California Los Angeles; University of California System; University of California Los Angeles
摘要:The construction of superlattices with a spatial modulation of chemical compositions allows for the creation of artificial materials with tailorable periodic potential landscapes and tunable electronic and optical properties1, 2, 3, 4-5. Conventional semiconductor superlattices with designable potential modulation in one dimension has enabled high-electron-mobility transistors and quantum-cascade lasers. More recently, a diverse set of superlattices has been constructed through self-assembly o...
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作者:Kalogriopoulos, Nicholas A.; Tei, Reika; Yan, Yuqi; Klein, Peter M.; Ravalin, Matthew; Cai, Bo; Soltesz, Ivan; Li, Yulong; Ting, Alice Y.
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作者:[Anonymous]
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作者:Dowling, Quinton M.; Park, Young-Jun; Fries, Chelsea N.; Gerstenmaier, Neil C.; Ols, Sebastian; Yang, Erin C.; Wargacki, Adam J.; Dosey, Annie; Hsia, Yang; Ravichandran, Rashmi; Walkey, Carl D.; Burrell, Anika L.; Veesler, David; Baker, David; King, Neil P.
作者单位:University of Washington; University of Washington Seattle; University of Washington; University of Washington Seattle; University of Washington; University of Washington Seattle; Howard Hughes Medical Institute
摘要:Discrete protein assemblies ranging from hundreds of kilodaltons to hundreds of megadaltons in size are a ubiquitous feature of biological systems and perform highly specialized functions1,2. Despite remarkable recent progress in accurately designing new self-assembling proteins, the size and complexity of these assemblies has been limited by a reliance on strict symmetry3. Here, inspired by the pseudosymmetry observed in bacterial microcompartments and viral capsids, we developed a hierarchic...
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作者:Cardini, Andrea
作者单位:Universita di Modena e Reggio Emilia
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作者:Shrikanth, Siddarth; Ermgassen, Sophus zu; Bull, Joseph W.
作者单位:University of Oxford
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作者:Brusatte, Stephen L.
作者单位:University of Edinburgh
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作者:Plackett, Benjamin
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作者:Zhang, Tao; Chen, Shu; Petkov, Petko St.; Zhang, Peng; Qi, Haoyuan; Nguyen, Nguyen Ngan; Zhang, Wenjie; Yoon, Jiho; Li, Peining; Brumme, Thomas; Alfonsov, Alexey; Liao, Zhongquan; Hambsch, Mike; Xu, Shunqi; Mester, Lars; Kataev, Vladislav; Buechner, Bernd; Mannsfeld, Stefan C. B.; Zschech, Ehrenfried; Parkin, Stuart S. P.; Kaiser, Ute; Heine, Thomas; Dong, Renhao; Hillenbrand, Rainer; Feng, Xinliang
作者单位:Technische Universitat Dresden; Technische Universitat Dresden; Chinese Academy of Sciences; Ningbo Institute of Materials Technology & Engineering, CAS; University of Sofia; Ulm University; Max Planck Society; Huazhong University of Science & Technology; Technische Universitat Dresden; Leibniz Association; Leibniz Institute for Solid State & Materials Research Dresden; Fraunhofer Gesellschaft; Fraunhofer Germany; Fraunhofer Ceramic Technologies & Systems; Technische Universitat Dresden; Technische Universitat Dresden; Technische Universitat Dresden; Helmholtz Association; Helmholtz-Zentrum Dresden-Rossendorf (HZDR); Yonsei University; Yonsei University; Institute for Basic Science - Korea (IBS); University of Hong Kong; University of Hong Kong; University of Basque Country; Basque Foundation for Science; University of Shanghai for Science & Technology
摘要:Linear conducting polymers show ballistic transport, imposed by mobile carriers moving along the polymer chains1,2, whereas conductance in the extended dimension, that is, between polymer strands or layers, remains weak due to the lack of intermolecular ordering and electronic coupling3, 4-5. Here we report a multilayer-stacked two-dimensional polyaniline (2DPANI) crystal, which shows metallic out-of-plane charge transport with high electrical conductivity. The material comprises columnar pi a...
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作者:Qu, Qi; Chen, Yan; Wang, Yu; Long, Shating; Wang, Weiche; Yang, Heng-Ye; Li, Mengqi; Tian, Xiao; Wei, Xiaoyan; Liu, Yan-Hui; Xu, Shengrong; Zhang, Cixiong; Zhu, Mingxia; Lam, Sin Man; Wu, Jianfeng; Yun, Chuyu; Chen, Junjie; Xue, Shengye; Zhang, Baoding; Zheng, Zhong-Zheng; Piao, Hai-Long; Jiang, Changtao; Guo, Hao; Shui, Guanghou; Deng, Xianming; Zhang, Chen-Song; Lin, Sheng-Cai