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Structural Effects on Defects and Growth in Crystals of Urea
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作者 ZHAO Qing-Lan HUANG Bing-Rong +1 位作者 HUANG Yi-Sen SU Gen-Bo(Fujian Institute of Research on the Structure Of Matter,the Chinese Academy Of Soiences, Fuzhou 350002) 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 1998年第1期47-51,共5页
The structural effects on the defective formation and the crystal mor-phology in the crystal of urea have been studied. The face development is discussedfrom the viewpoint of the molecular resonance structures and def... The structural effects on the defective formation and the crystal mor-phology in the crystal of urea have been studied. The face development is discussedfrom the viewpoint of the molecular resonance structures and defects, and the form oflarge strained fields is also discussed from the existence of the structural channels alongthe c-axis. 展开更多
关键词 DEFECT structure GROWTH urea crystal
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Nb_2O_5掺杂对提高钨酸铅晶体发光性能的微观研究
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作者 梁玲 顾牡 +11 位作者 段勇 马晓辉 刘峰松 吴湘惠 陈铭南 廖晶莹 沈定中 张昕 宫波 薛炫萍 徐炜新 王景成 《光学学报》 EI CAS CSCD 北大核心 2003年第6期734-739,共6页
通过透射谱、X射线激发发射谱 (XSL)的测试 ,研究了布里奇曼 (Bridgman)法生长的掺铌钨酸铅晶体的发光性能 ,并利用正电子湮没寿命谱 (PAT)和X射线光电子能谱 (XPS)的实验手段 ,对其微观缺陷进行了深入研究。结果表明 ,铌掺杂能够有效... 通过透射谱、X射线激发发射谱 (XSL)的测试 ,研究了布里奇曼 (Bridgman)法生长的掺铌钨酸铅晶体的发光性能 ,并利用正电子湮没寿命谱 (PAT)和X射线光电子能谱 (XPS)的实验手段 ,对其微观缺陷进行了深入研究。结果表明 ,铌掺杂能够有效地改善钨酸铅晶体的 35 0nm吸收带 ,提高钨酸铅晶体的发光快成分比例 ,并使得晶体中的正电子捕获中心浓度上升 ,低价氧浓度上升。提出掺铌钨酸铅晶体中Nb5+ 将占据W6+ 格位并使得晶体内部分(WO4) 2 -根团成为 (NbO3 +VO) -,由此可改善钨酸铅的发光性能。 展开更多
关键词 钨酸铅晶体 正电子湮没寿命谱 五氧化二铌 掺杂 X光电子能谱 透射光谱 晶体结构缺陷
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Elastic wave propagation and localization in band gap materials:a review 被引量:5
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作者 LI FengMing WANG YiZe 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第10期1734-1746,共13页
Band gap materials(i.e.phononic crystals) are the artificially periodic structures,which have the stop band characteristic for elastic waves.The elastic waves will be localized in phononic crystals with defects,which ... Band gap materials(i.e.phononic crystals) are the artificially periodic structures,which have the stop band characteristic for elastic waves.The elastic waves will be localized in phononic crystals with defects,which results in the energy being accumulated around the defects.As a result,it is important to analyze the wave propagation and localization in band gap materials,especially for the structures consisting of smart materials.For example,with the mechanical-electro and mechanical-electro-magneto coupling,the phononic crystals consisting of piezoelectric and magnetoelectroelastic materials can be applied widely.This sets the theoretical basis for the design of band gap materials with multi fields coupling.This paper reviews the recent development of the elastic wave propagation and localization in both ordered and disordered band gap materials.The discussion focuses on the stop band and localization characteristics of elastic waves.Analytical methods and important results are also presented.Finally,some problems for further studies are discussed.This work aims to present the basic properties of wave band gaps in phononic crystals and wave localization in disordered periodic structures(e.g.phononic crystals with definite and random defects and phononic quasicrystals). 展开更多
关键词 band gap materials stop band characteristics DEFECT LOCALIZATION
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Research on the nanometric machining of a single crystal nickel via molecular dynamics simulation 被引量:4
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作者 GONG Ya Dong ZHU Zong Xiao +1 位作者 ZHOU Yun Guang SUN Yao 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第12期1837-1846,共10页
Molecular dynamics simulations are employed to study the nanometric machining process of single crystal nickel. Atoms from different machining zones had different atomic crystal structures owing to the differences in ... Molecular dynamics simulations are employed to study the nanometric machining process of single crystal nickel. Atoms from different machining zones had different atomic crystal structures owing to the differences in the actions of the cutting tool. The stacking fault tetrahedral was formed by a series of dislocation reactions, and it maintained the stable structure after the dislocation reactions. In addition, evidence of crystal transition and recovery was found by analyzing the number variations in different types of atoms in the primary shear zone, amorphous region, and crystalline region. The effects of machining speed on the cutting force, chip and subsurface defects, and temperature of the contact zone between the tool and workpiece were investigated. The results suggest that higher the machining speed, larger is the cutting force. The degree of amorphousness of chip atoms and the depth and extent of subsurface defects increase with the machining speed. The average friction coefficient first decreases and then increases with the machining speed because of the temperature difference between the chip and machining surface. 展开更多
关键词 molecular dynamics simulation nanometric machining single crystal nickel crystal transition and recovery machining speed
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