Chen Wei, Pan Xiulian, Bao Xinhe
State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Zhongshan Road 457, Dalian 116023, P. R. China.
J Am Chem Soc. 2007 Jun 13;129(23):7421-6. doi: 10.1021/ja0713072. Epub 2007 May 18.
We report the tuning of the redox properties of iron and iron oxide nanoparticles by encapsulation within carbon nanotubes (CNTs) with varying inner diameters. Raman spectroscopy was employed to investigate the interaction of the encapsulated nanoparticles with the CNTs. A red shift of the Fe-O mode is observed in the nanoparticles deposited on the outer CNT surfaces with respect to bulk Fe2O3. However, this mode is found to be stepwise blue-shifted with decreasing inner diameter in the CNT-encapsulated Fe2O3 nanoparticles, suggesting an enhanced interaction of Fe2O3 with the inner CNT surface as its curvature increases. The autoreduction of the encapsulated Fe2O3 is significantly facilitated inside CNTs with respect to the outside nanoparticles. Interestingly, it becomes more facile with decreasing CNT channel diameter as evidenced by temperature programmed reaction, in situ XRD, and Raman spectroscopy. The oxidation of encapsulated metallic Fe nanoparticles on the other hand is retarded in comparison to that of the outside Fe particles as shown by in situ XRD and gravimetrical measurements with an online microbalance. We attribute this tunable redox behavior of transition metal nanoparticles inside CNTs to a particular electronic interaction of the encapsulates with the interior CNT surface, which stabilizes the metallic state of Fe.
我们报道了通过封装在具有不同内径的碳纳米管(CNT)中来调节铁和氧化铁纳米颗粒的氧化还原性质。采用拉曼光谱研究封装的纳米颗粒与碳纳米管之间的相互作用。相对于块状Fe2O3,沉积在碳纳米管外表面的纳米颗粒中观察到Fe - O模式的红移。然而,在碳纳米管封装的Fe2O3纳米颗粒中,发现该模式随着内径减小而逐步蓝移,这表明随着碳纳米管曲率增加,Fe2O3与碳纳米管内表面的相互作用增强。相对于外部纳米颗粒,碳纳米管内部封装的Fe2O3的自动还原显著促进。有趣的是,通过程序升温反应、原位XRD和拉曼光谱证明,随着碳纳米管通道直径减小,自动还原变得更容易。另一方面,如原位XRD和在线微量天平的重量测量所示,与外部铁颗粒相比,封装的金属铁纳米颗粒的氧化受到抑制。我们将碳纳米管内过渡金属纳米颗粒这种可调的氧化还原行为归因于封装物与碳纳米管内表面的特定电子相互作用,这种相互作用稳定了铁的金属态。