Han Lin, Hou Pengfei, Feng Yan, Liu Hui, Li Jianling, Peng Zhijian, Yang Jun
School of Engineering and Technology, China University of Geosciences, Beijing, 100083, China.
Dalton Trans. 2014 Aug 21;43(31):11981-7. doi: 10.1039/c4dt00998c.
Phase transfer techniques possess remarkable advantages for the synthesis of inorganic nanomaterials. In contrast to the abundant reports on the preparation of noble metal nanoparticles using phase transfer, the number of semiconductor nanocrystals syntheses based on phase transfer techniques is still limited. Herein, we report a systematic study of the phase transfer-based synthesis of HgS nanocrystals, including the tuning of their morphology/shape by either solvent choice or temperature. This strategy involves the transfer of Hg(ii) ions from aqueous solution to toluene, oleic acid or oleylamine and subsequent sulfidation at room or elevated temperature. Furthermore, we have extended this phase-transfer based strategy to the fabrication of HgS-Au nanocomposites. The studies in this work might provide a facile route for producing HgS nanocrystals with desirable properties and offer an effective strategy to investigate the influence of the morphology of HgS on the physical/chemical properties of various HgS-based materials.
相转移技术在无机纳米材料的合成中具有显著优势。与利用相转移制备贵金属纳米粒子的大量报道相比,基于相转移技术合成半导体纳米晶体的数量仍然有限。在此,我们报道了一项基于相转移法合成硫化汞纳米晶体的系统研究,包括通过溶剂选择或温度调节其形态/形状。该策略涉及将汞(II)离子从水溶液转移到甲苯、油酸或油胺中,随后在室温或升高的温度下进行硫化。此外,我们还将这种基于相转移的策略扩展到了硫化汞-金纳米复合材料的制备。这项工作中的研究可能为制备具有理想性能的硫化汞纳米晶体提供一条简便途径,并为研究硫化汞形态对各种基于硫化汞的材料的物理/化学性质的影响提供一种有效策略。