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High Resolution Electron Microscopy Observations of Structural Changes in Iron Nitride Films Annealed in Vacuum
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作者 Shengkai GONG Huibin XU (Dept. of Materials Science and Engineering, Beijing University of Aeronautics and Astronautics, Beijing 100083, China) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1997年第2期123-126,共4页
Iron-nitride films were prepared by reactive sputtering, and the effect of annealing treatment on the structures was investigated by means of in-situ electron microscopy and high resolution electron microscopy (HREM).... Iron-nitride films were prepared by reactive sputtering, and the effect of annealing treatment on the structures was investigated by means of in-situ electron microscopy and high resolution electron microscopy (HREM). As-deposited films were observed to be a mixed structure of a few ultrafine epsilon-Fe2-3N particles existing in the amorphous matrix. it was found that the structure-relaxation in the amorphous occurred at 473 K, and the ultrafine grains began to grow at the higher annealing temperatures. The transition of the amorphous to epsilon-Fe2-3N was almost completed at 673 K. It is considered that the formation of the ideal epsilon-Fe3N is originated from the ordering of the nitrogen atoms during the annealing in vacuum. On the other hand, gamma'-phase (Fe4N) was seen to precipitation of epsilon-phase at 723 K. Two possible modes are proposed in the precipitation of gamma'-phase, depending on the heating rate and crystallographic orientation relationships, i.e. [121](epsilon)//[001](gamma), (2(1) over bar0$)(epsilon)//(110)(gamma) and [100](epsilon)//[110](gamma), (001)(epsilon)//(111)(gamma). In addition, alpha-Fe particles were observed to form from the gamma'-phase at high temperatures. We assumed that these structural changes are due to the diffusion of nitrogen and iron atoms during the annealing, except for the case of the precipitation of the gamma'-phase as depicted above. The results obtained in this work are in a good agreement with the assumption. 展开更多
关键词 FIGURE High Resolution Electron Microscopy Observations of Structural Changes in Iron Nitride films Annealed in Vacuum
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Langmuir-Blodgett film formation of rare-earth metal di-,triphthalocyanine complexes and observation of their thin film by means of TEM and STM
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作者 LIU,Yun-Qi ZHU,Dao-Ben RUAN,Li-Ke BAI,Chun-Li Institute of Chemistry,Academia Sinica,Beijing 100080YAMADA,Akira SHIGEHARA,Kiyotaka The Institute of Physical and Chemical Research,Wako,Saitama 351-01,Japan 《Chinese Journal of Chemistry》 SCIE CAS CSCD 1991年第2期126-130,共0页
Three different kinds of rare-earth metal phthalocyanine complexes(Pc_2LuH,Pc_3Gd_2, R_(12) Pc_3Dy_2)were synthesized.Their ultra-thin films were prepared by the Langmuir-Blodgett techni- que.Crystallites were observe... Three different kinds of rare-earth metal phthalocyanine complexes(Pc_2LuH,Pc_3Gd_2, R_(12) Pc_3Dy_2)were synthesized.Their ultra-thin films were prepared by the Langmuir-Blodgett techni- que.Crystallites were observed in Langmuir film of Pc_3Gd_2 by means of transmission electron micros- copy.The limiting molecular areas of the phthalocyanine derivatives on pure water increased in the order mono-,di-and triphthalocyanine,implying that these phthalocyanine molecules are stacked with a face-to-face orientation and edge-on to the water surface.By using scanning tunneling mic- roscopy individual molecules of lutetium diphthalocyanine adsorbed on graphite surfaces were imaged for the first time. 展开更多
关键词 Langmuir-Blodgett film formation of rare-earth metal di triphthalocyanine complexes and observation of their thin film by means of TEM and STM TEM
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