Borup Anders B, Bjerre-Christensen Nanna, Bertelsen Andreas D, Mamakhel Aref H, Bondesgaard Martin, Iversen Bo B
Department of Chemistry and iNANO, Aarhus University, Langelandsgade 140, Aarhus 8000, Denmark.
Inorg Chem. 2024 Aug 26;63(34):15716-15723. doi: 10.1021/acs.inorgchem.4c01629. Epub 2024 Aug 8.
With its large direct band gap and good chemical stability, ZnS is suitable for many applications, including light-emitting diodes, panel displays, and photodetection. Here, nanoparticles of ZnS are synthesized phase pure under ambient conditions by precipitation in a simple and scalable continuous-flow reactor. Furthermore, different degrees of Zn substitution with Mn have been investigated, ZnMnS, with = 0.05, 0.19, and 0.25 according to X-ray fluorescence measurements. The products are analyzed with multitemperature synchrotron powder X-ray diffraction (PXRD) and X-ray total scattering. The analysis reveals phase-pure synthesis products with the sphalerite structure and crystallite sizes in the range of 3.8-4.7 nm in agreement with scanning transmission electron microscopy. Only ZnMnS shows traces of MnO, indicating that = 0.25 is above the substitution limit as the impurity appears. Substitution of Zn with Mn in the nanoparticles is confirmed by energy-dispersive X-ray spectroscopy, as well as an observed decrease in the band gap, decrease in the sphalerite-to-wurtzite phase transition temperature, and increase in the unit cell dimensions with increasing Mn content. Based on the modeling of the PXRD Rietveld refined atomic displacement parameters, the Debye temperature for ZnS and ZnMnS is determined to be 322 ± 13 and 394 ± 22 K, respectively.
由于具有较大的直接带隙和良好的化学稳定性,硫化锌适用于许多应用,包括发光二极管、平板显示器和光电探测。在此,通过在简单且可扩展的连续流反应器中沉淀,在环境条件下合成了纯相的硫化锌纳米颗粒。此外,还研究了用锰对锌进行不同程度的取代,根据X射线荧光测量,得到了Mn取代量分别为0.05、0.19和0.25的ZnMnS。采用多温度同步辐射粉末X射线衍射(PXRD)和X射线全散射对产物进行了分析。分析结果表明,合成产物为具有闪锌矿结构的纯相,微晶尺寸在3.8 - 4.7 nm范围内,这与扫描透射电子显微镜的结果一致。只有ZnMnS显示出MnO的痕迹,这表明当杂质出现时,Mn取代量为0.25超过了取代极限。通过能量色散X射线光谱证实了纳米颗粒中锌被锰取代,同时观察到带隙减小、闪锌矿向纤锌矿的相变温度降低以及随着锰含量增加晶胞尺寸增大。基于PXRD Rietveld精修原子位移参数的建模,确定ZnS和ZnMnS的德拜温度分别为322 ± 13 K和394 ± 22 K。