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富勒烯及氟化富勒烯在裸金刚石和氢化金刚石上的化学键合

Chemical bonding of fullerene and fluorinated fullerene on bare and hydrogenated diamond.

作者信息

Ouyang Ti, Loh Kian Ping, Qi Dongchen, Wee Andrew Thye Shen, Nesladek Milos

机构信息

Department of Chemistry, National University of Singapore, 3 Science Drive 3, 117543, Singapore.

出版信息

Chemphyschem. 2008 Jun 23;9(9):1286-93. doi: 10.1002/cphc.200800054.

Abstract

We investigate the interface between a C(60) fullerite film, C(60)F(36), and diamond (100) by using core-level photoemission spectroscopy, cyclic voltammetry (CV), and high-resolution electron energy loss spectroscopy (HREELS). We show that C(60) can be covalently bonded to reconstructed C(100)-2x1 and that the bonded interface is sufficiently robust to exhibit characteristic C(60) redox peaks in solution. The bare diamond surface can be passivated against oxidation and hydrogenation by covalently bound C(60). However, C(60)F(36) is not as stable as C(60) and desorbs below 300 degrees C (the latter species being stable up to 500 degrees C on the diamond surface). Neither C(60) fullerite nor C(60)F(36) form reactive interfaces on the hydrogenated surface-they both desorb below 300 degrees C. The surface transfer doping process of hydrogenated diamond by C(60)F(36) is the most evident one among all the adsorbate systems studied (with a coverage-dependent band bending induced by C(60)F(36)).

摘要

我们通过使用芯能级光电子能谱、循环伏安法(CV)和高分辨率电子能量损失谱(HREELS)来研究C(60)富勒烯薄膜、C(60)F(36)与金刚石(100)之间的界面。我们表明,C(60)可以与重构的C(100)-2x1共价键合,并且键合界面足够稳定,在溶液中能呈现出特征性的C(60)氧化还原峰。裸露的金刚石表面可以通过共价结合的C(60)来防止氧化和氢化。然而,C(60)F(36)不如C(60)稳定,在300摄氏度以下会解吸(后者在金刚石表面高达500摄氏度时是稳定的)。C(60)富勒烯和C(60)F(36)在氢化表面上都不会形成反应性界面——它们都在300摄氏度以下解吸。在所有研究的吸附质体系中,C(60)F(36)对氢化金刚石的表面转移掺杂过程最为明显(由C(60)F(36)引起与覆盖度相关的能带弯曲)。

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