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The effect of rigid phenoxyl substituent on the NH3-sensing properties of tetra-alpha-(4-tert-butylp

上海光学精密机械研究所 免费考研网/2018-05-06

外文题目: The effect of rigid phenoxyl substituent on the NH3-sensing properties of tetra-alpha-(4-tert-butylphenoxyl)-metallophthalocyanine/reduced graphene oxide hybrids
作者: Yu, Zheying; Wang, Bin; Li, Yong; Kang, Di; Chen, Zhimin; Wu, Yiqun
刊名: RSC Adv.
年: 2017 卷: 7 期: 36 页: 22599--22609
英文关键词:

WALLED CARBON NANOTUBE; ELECTRON-WITHDRAWING GROUPS; GAS SENSORS; MOLECULAR-ORIENTATION; COPPER PHTHALOCYANINE; FILMS; ADSORPTION; DIOXIDE; COBALT; LAYER
英文摘要:
Herein, we report a type of enhanced ammonia (NH3) sensing materials formed by the functionalization of reduced graphene oxide (RGO) with 1,8,15,22-tetra-(4-tert-butylphenoxyl)-metallophthalocyanine (TBPOMPc, M = Cu, Ni, and Pb) via a solution self-assembly method based on pi-pi stacking interactions. The RGO/TBPOMPc hybrids exhibit excellent sensitivity, high response value, and fast response and recovery at room temperature, especially the RGO/TBPOPbPc sensor. The enhancement of the NH3-sensing performance by TBPOMPc with a rigid phenoxyl-substituted group is attributed to the self-assembly behavior of TBPOMPc molecules. The rigid structure of TBPOMPc effectively prevents the intermolecular aggregation behavior. On the one hand, it expands the specific surface area of the RGO/TBPOMPc hybrids, which is propitious for the physical adsorption and diffusion of NH3 molecules and reduces the response and recovery time. On the other hand, it weakens the electronic interaction between TBPOMPc molecules and results in reducing the resistance of charge transfer from NH3 to TBPOMPc. Moreover, TBPOMPc is beneficial to enhance the sensitivity and selectivity of the RGO/TBPOMPc sensors towards NH3. By contrast, the response of various RGO/TBPOMPc sensors decreases in the order of RGO/TBPOPbPc > RGO/TBPOCuPc > RGO/TBPONiPc. Furthermore, the rigid structure and central metals of TBPOMPc play a critical role in the sensitivity of NH3, as evidenced from the scanning tunneling microscopy, current-voltage characteristics, and electrochemical impedance spectra.


文献类型: 期刊论文
正文语种: English
收录类别: SCI
DOI: 10.1039/c7ra02740k


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