UAB Digital Repository of Documents 3 records found  Search took 0.00 seconds. 
1.
12 p, 8.1 MB Engineering grain boundaries at the 2D limit for the hydrogen evolution reaction / He, Yongmin (Nanyang Technological University. School of Materials Science and Engineering (Singapore)) ; Tang, PengYi (Institut Català de Nanociència i Nanotecnologia) ; Hu, Zhili (Rice University. Department of Materials Science and NanoEngineering (USA)) ; He, Qiyuan (Nanyang Technological University. School of Materials Science and Engineering (Singapore)) ; Zhu, Chao (Nanyang Technological University. School of Materials Science and Engineering (Singapore)) ; Wang, Luqing (Rice University. Department of Materials Science and NanoEngineering (USA)) ; Zeng, Qingsheng (Nanyang Technological University. School of Materials Science and Engineering (Singapore)) ; Golani, Prafful (Nanyang Technological University. School of Materials Science and Engineering (Singapore)) ; Gao, Guanhui (Paul-Drude-Institut für Festkörperelektronik Leibniz-Institut im Forschungsverbund (Germany)) ; Fu, Wei (Nanyang Technological University. School of Materials Science and Engineering (Singapore)) ; Huang, Zhiqi (Nanyang Technological University. School of Materials Science and Engineering (Singapore)) ; Gao, Caitian (Nanyang Technological University. Centre for Micro-/Nano-electronics (Singapore)) ; Xia, Juan (University of Electronic Science and Technology of China. Institute of Fundamental and Frontier Sciences (China)) ; Wang, Xingli (Nanyang Technological University. CNRS-International-NTU-THALES Research Alliance (Singapore)) ; Wang, Xuewen (Northwestern Polytechnical University. Institute of Flexible Electronics (China)) ; Zhu, Chao (Nanyang Technological University. School of Materials Science and Engineering (Singapore)) ; Ramasse, Quentin (University of Leeds. School of Chemical and Process Engineering (UK)) ; Zhang, Ao (Nanyang Technological University. School of Materials Science and Engineering (Singapore)) ; An, Boxing (Beijing University of Technology. College of Materials Science and Engineering (China)) ; Zhang, Yongzhe (Beijing University of Technology. College of Materials Science and Engineering (China) ; Martí-Sánchez, Sara (Institut Català de Nanociència i Nanotecnologia) ; Morante, Joan Ramon (Institut de Recerca en Energia de Catalunya) ; Wang, Liang (Shanghai University. School of Environmental and Chemical Engineering (China)) ; Tay, Beng Kang (Nanyang Technological University. CNRS-International-NTU-THALES Research Alliance (Singapore)) ; Yakobson, Boris I. (Rice University. Department of Materials Science and NanoEngineering (USA)) ; Trampert, Achim (Paul-Drude-Institut für Festkörperelektronik Leibniz-Institut im Forschungsverbund Berlin Hausvogteiplatz (Germany)) ; Zhang, Hua (City University of Hong Kong. Department of Chemistry (China)) ; Wu, Minghong (Shanghai University. School of Environmental and Chemical Engineering (China)) ; Wang, Qi Jie (Nanyang Technological University. Center for OptoElectronics and Biophotonics (Singapore)) ; Arbiol i Cobos, Jordi (Institut Català de Nanociència i Nanotecnologia) ; Liu, Zheng (Environmental Chemistry and Materials Centre. Nanyang Environment and Water Research Institute (Singapore))
Atom-thin transition metal dichalcogenides (TMDs) have emerged as fascinating materials and key structures for electrocatalysis. So far, their edges, dopant heteroatoms and defects have been intensively explored as active sites for the hydrogen evolution reaction (HER) to split water. [...]
2020 - 10.1038/s41467-019-13631-2
Nature communications, Vol. 11 (January 2020) , art. 57  
2.
15 p, 565.4 KB A novel high-throughput in vivo molecular screen for shade avoidance mutants identifies a novel phyA mutation / Wang, Xuewen (Royal Holloway University of London. School of Biological Sciences) ; Roig Villanova, Irma (Centre de Recerca en Agrigenòmica) ; Khan, Safina (Royal Holloway University of London. School of Biological Sciences) ; Shanahan, Hugh (Royal Holloway University of London. Department of Computer Science) ; Quail, Peter H. (UC Berkeley. Department of Plant and Microbial Biology) ; Martínez García, Jaime F. (Centre de Recerca en Agrigenòmica) ; Devlin, Paul F. (Royal Holloway University of London. School of Biological Sciences)
The shade avoidance syndrome (SAS) allows plants to anticipate and avoid shading by neighbouring plants by initiating an elongation growth response. The phytochrome photoreceptors are able to detect a reduction in the red:far red ratio in incident light, the result of selective absorption of red and blue wavelengths by proximal vegetation. [...]
2011 - 10.1093/jxb/err062
Journal of experimental botany, Vol. 62, Issue 8 (May 2011) , p. 2973-2987  
3.
9 p, 3.0 MB DRACULA2 is a dynamic nucleoporin with a role in regulating the shade avoidance syndrome in Arabidopsis / Gallemí, Marçal (Centre de Recerca en Agrigenòmica) ; Galstyan, Anahit (Centre de Recerca en Agrigenòmica) ; Paulišić, Sandi (Centre de Recerca en Agrigenòmica) ; Then, Christiane (Centre de Recerca en Agrigenòmica) ; Ferrández-Ayela, Almudena (Universidad Miguel Hernández de Elche. Instituto de Bioingeniería) ; Lorenzo-Orts, Laura (Centre de Recerca en Agrigenòmica) ; Roig Villanova, Irma (Centre de Recerca en Agrigenòmica) ; Wang, Xuewen (University of London. Royal Holloway. School of Biological Sciences) ; Micol, Jose Luis (Universidad Miguel Hernández de Elche. Instituto de Bioingeniería) ; Ponce, Maria Rosa (Universidad Miguel Hernández de Elche. Instituto de Bioingeniería) ; Devlin, Paul F. (University of London. Royal Holloway. School of Biological Sciences) ; Martínez García, Jaime F. (Centre de Recerca en Agrigenòmica)
When plants grow in close proximity basic resources such as light can become limiting. Under such conditions plants respond to anticipate and/or adapt to the light shortage, a process known as the shade avoidance syndrome (SAS). [...]
2016 - 10.1242/dev.130211
Development (Cambridge), Vol. 143, issue 9 (May 2016) , p. 1623-1631  

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