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首页> 外文期刊>Nanotechnology >Role of Ni2+(d(8)) ions in electrical, optical and magnetic properties of CdS nanowires for optoelectronic and spintronic applications
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Role of Ni2+(d(8)) ions in electrical, optical and magnetic properties of CdS nanowires for optoelectronic and spintronic applications

机译:Ni2 +(D(8))离子在CDS纳米线的电气,光学和磁性中的作用,用于光电和旋转式应用

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For the first time, 1D Ni ion doped CdS nanowires (NWs) were synthesized via chemical vapour deposition (CVD). The synthesized Cd0.886Ni0.114S NWs were single crystalline. We have reported here the investigation of optical, electrical and magnetic properties of prepared NWs for optoelectronic and spintronic applications. Successful incorporation of Ni ions in an individual CdS NW has been confirmed through several characterization tools: significantly higher angle and phonon mode shift were observed in the XRD and Raman spectra. SEM-EDX and XPS analysis also confirmed the presence of Ni2+ ions. Room temperature photoluminescence (RT-PL) showed multiple peaks: two emission peaks in the visible region centered at 517.1 nm (green), 579.2 nm (orange), and a broad-band near infra-red (NIR) emission centered at 759.9 nm. The first peak showed 5 nm red shift upon Ni2+ doping, hinting at the formation of exciton magnetic polarons (EMPs), and broad NIR emission was observed in both chlorides and bromides, which was assigned to d-d transition of Ni ions whose energy levels lying at 749.51 nm (13 342 cm(-1) ) and 750.98 nm (13 316 cm(-1)) are very close to NIR emission. Orange emission not only remained at same peak position-its PL intensity was also significantly enhanced at 78 K; this was assigned to d-d transition ((3)A(2g) - E-1(g)) of Ni2+ ions. It was observed that 11.4% Ni2+ ion doping enhanced the conductivity of our sample around 20 times, and saturation magnetization (M-s) increased from 7.2 x 10(-5) Am-2/Kg to 1.17 x 10(-4) Am-2/Kg, which shows promise for optoelectronic and spintronic applications.
机译:首次,通过化学气相沉积(CVD)合成1D Ni离子掺杂CDS纳米线(NWS)。合成的CD0.886NI0.114S NWS是单晶。我们在此报道了对光电和旋转式应用的制备NWS的光学,电气和磁性的研究。通过多个表征工具确认了在单个CDS NW中的成功结合NI离子:在XRD和拉曼光谱中观察到显着高的角度和声子模式偏移。 SEM-EDX和XPS分析还证实存在Ni2 +离子。室温光致发光(RT-PL)显示多个峰:可见区域中的两个发射峰,以517.1nm(绿色),579.2nm(橙色)为中心,靠近红外线(NIR)排放的宽带,以759.9 nm为中心。在Ni2 +掺杂时,第一峰显示5nm的红色移位,在形成激子磁解极(EMPS)时暗示,并且在氯化物和溴化物中观察到宽的NIR排放,这被分配给尼尔斯的DD转变为位于749.51 nm(13 342cm(-1))和750.98nm(13 316厘米(-1))非常接近NIR排放。橙色排放不仅保持在相同的峰值位置 - 其PL强度也在78 k下显着增强;这被分配给D-D转化((3)A(2g) - & e-1(g))的Ni2 +离子。观察到11.4%的Ni2 +离子掺杂增强了20倍的样品的电导率,饱和磁化强度(MS)从7.2×10(-5)am-2 / kg增加到1.17×10(-4)AM-2 / kg显示光电和旋转式应用的承诺。

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