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Articles, 2 records found
Articles 2 records found  
1.
6 p, 742.9 KB Preparation of porous carbons from halloysite-sucrose mixtures / Wang, Ai-Ping (Graduate University of the Chinese Academy of Sciences) ; Kang, Feiyu (Tsinghua University. Laboratory of Advanced Materials) ; Huang, Zheng-Hong (Tsinghua University. Laboratory of Advanced Materials) ; Guo, Zancheng (Chinese Academy of Sciences. Institute of Process Engineering)
Porous carbons rich in mesopores and with large pore volumes have been prepared by polymerization and carbonization of a carbon precursor, sucrose, within a matrix of the natural clay, halloysite. The carbon precursor was impregnated into the pores of halloysite and mostly deposited on the external surface of the halloysite rods during impregnation. [...]
2006 - 10.1346/CCMN.2006.0540409
Clays and Clay Minerals, Vol. 54, Núm. 4 (2006) , p. 485-490  
2.
5 p, 993.1 KB Grain boundaries as preferential sites for Resistive Switching in the HfO2 RRAM structures / Lanza, Mario (Universitat Autònoma de Barcelona. Departament d'Enginyeria Electrònica) ; Zhang, K. (Peking University. Department of Electronics) ; Porti i Pujal, Marc (Universitat Autònoma de Barcelona. Departament d'Enginyeria Electrònica) ; Nafría i Maqueda, Montserrat (Universitat Autònoma de Barcelona. Departament d'Enginyeria Electrònica) ; Shen, Z. Y. (Peking University. Department of Electronics) ; Liu, L. F. (Peking University. Institute of Microelectronics) ; Kang, J. F. (Peking University. Institute of Microelectronics) ; Gilmer, D. (SEMATECH (Austin, Estats Units d'Amèrica)) ; Bersuker, G. (SEMATECH (Austin, Estats Units d'Amèrica))
Resistive switching (RS) phenomenon in the HfO2 dielectric has been indirectly observed at device level in previous studies using metal-insulator-metal structures, but its origin remains unclear. In this work, using the enhanced conductive atomic force microscope (ECAFM), we have been able to obtain in situ direct observation of RS with nanometric resolution. [...]
2012 - 10.1063/1.3697648
Applied physics letters, Vol. 100, Issue 12 (March 2012) , p. 123508-1-123508-4  

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1 Kang, Feiyu
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