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Amorphous-to-crystalline transition-induced two-step thin film growth of quasi-one-dimensional penta-telluride ZrTe_(5)
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作者 Yi Shuang Yuta Saito +3 位作者 Shogo Hatayama Paul Fons Ando Daisuke yuji sutou 《Journal of Materials Science & Technology》 2025年第7期246-253,共8页
Quasi-one-dimensional(quasi-1D)van der Waals(vdWs)materials,such as ZrTe_(5),exhibit unique elec-trical properties and quantum phenomena,making them attractive for advanced electronic applications.However,large-scale ... Quasi-one-dimensional(quasi-1D)van der Waals(vdWs)materials,such as ZrTe_(5),exhibit unique elec-trical properties and quantum phenomena,making them attractive for advanced electronic applications.However,large-scale growth of ZrTe_(5) thin films presents challenges.We address this by employing sput-tering,a common semiconductor industry technique.The as-deposited ZrTe_(5) film is amorphous,and post-annealing induces a crystallization process akin to transition-metal dichalcogenides.Our study in-vestigates the electrical and optical properties during this amorphous-to-crystalline transition,reveal-ing insights into the underlying mechanism.This work contributes to the fundamental understanding of quasi-1D materials and introduces a scalable fabrication method for ZrTe_(5) which offers the possibility of fabricating unique future electronic and optical devices. 展开更多
关键词 QUASI-ONE-DIMENSIONAL ZrTe_(5) Large-scale Thin film PHASE-CHANGE
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高强度低密度Fe-20Mn-Al-C基合金 被引量:1
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作者 yuji sutou 乔林锁 《现代冶金(内蒙古)》 2014年第1期37-43,共7页
在室温下以硬度、冷加工性和拉伸试验研究了Fe-20Mn-(10-14)Al-(0-1.8)C(wt%)四元合金和Fe-20Mn-(10-14)Al-(0.75-1.8)C-5Cr(wt%)五元合金的机械性能,四元系和五元系中的γ(fcc)合金密度低于7.0 g/cm^3,具有极好的韧性,其硬度和拉伸强度... 在室温下以硬度、冷加工性和拉伸试验研究了Fe-20Mn-(10-14)Al-(0-1.8)C(wt%)四元合金和Fe-20Mn-(10-14)Al-(0.75-1.8)C-5Cr(wt%)五元合金的机械性能,四元系和五元系中的γ(fcc)合金密度低于7.0 g/cm^3,具有极好的韧性,其硬度和拉伸强度随Al和C含量的增加而提高,γ+α(bcc)双相合金通过控制α体积分数可以得到高的强度,由TEM观察确认Al和C含量高的合金具有高硬度和高强度的原因是由于从退火温度开始冷却过程中析出了钙钛矿结构的k型碳化物。Fe-20Mn-11Al-1.8C-5Cr合金的密度为6.51 g/cm^3,表现出大于180 MPa·cm^3/g高的特殊强度和40%的极好延伸率,Fe-20Mn-Al-C(-5Cr)合金与常用钢相比具有高的特殊强度。 展开更多
关键词 Fe-Mn-Al-C合金 Fe-Mn-Al-C-Cr合金 低密度 高特殊强度 k相析出硬化
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