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通过去除氧来增强单壁碳纳米管的电子自旋共振。

Enhancement of the electron spin resonance of single-walled carbon nanotubes by oxygen removal.

机构信息

Department of Electrical and Computer Engineering, Rice University, Houston, Texas 77005, USA.

出版信息

ACS Nano. 2012 Mar 27;6(3):2165-73. doi: 10.1021/nn204094s. Epub 2012 Feb 24.

DOI:10.1021/nn204094s
PMID:22324937
Abstract

We have observed a nearly 4-fold increase in the electron spin resonance (ESR) signal from an ensemble of single-walled carbon nanotubes (SWCNTs) due to oxygen desorption. By performing temperature-dependent ESR spectroscopy both before and after thermal annealing, we found that the ESR in SWCNTs can be reversibly altered via the molecular oxygen content in the samples. Independent of the presence of adsorbed oxygen, a Curie law (spin susceptibility ∝ 1/T) is seen from ~4 to 300 K, indicating that the probed spins are finite-level species. For both the pre-annealed and post-annealed sample conditions, the ESR line width decreased as the temperature was increased, a phenomenon we identify as motional narrowing. From the temperature dependence of the line width, we extracted an estimate of the intertube hopping energy; for both sample conditions, we found this hopping energy to be ~1.2 meV. Since the spin hopping energy changes only slightly when oxygen is desorbed, we conclude that only the spin susceptibility, not spin transport, is affected by the presence of physisorbed molecular oxygen in SWCNT ensembles. Surprisingly, no line width change is observed when the amount of oxygen in the SWCNT sample is altered, contrary to other carbonaceous systems and certain 1D conducting polymers. We hypothesize that physisorbed molecular oxygen acts as an acceptor (p-type), compensating the donor-like (n-type) defects that are responsible for the ESR signal in bulk SWCNTs.

摘要

我们观察到,由于氧气解吸,单壁碳纳米管 (SWCNT) 集合体的电子自旋共振 (ESR) 信号增加了近 4 倍。通过在热退火前后进行温度依赖的 ESR 光谱学研究,我们发现 SWCNT 中的 ESR 可以通过样品中的分子氧含量进行可逆改变。无论是否存在吸附氧,在~4 到 300 K 之间都可以看到居里定律(自旋磁化率∝1/T),表明探测到的自旋是有限能级物质。对于预退火和退火后两种样品条件,ESR 线宽随着温度升高而减小,这种现象我们认为是动态变窄。从线宽随温度的变化,我们提取了管间跃迁能量的估计值;对于两种样品条件,我们发现这个跃迁能量约为 1.2 meV。由于自旋跃迁能量在氧气解吸时仅略有变化,我们得出结论,只有自旋磁化率而不是自旋输运受到 SWCNT 集合体中物理吸附分子氧的影响。令人惊讶的是,当 SWCNT 样品中的氧气量发生变化时,没有观察到线宽变化,这与其他碳质系统和某些 1D 导电聚合物不同。我们假设物理吸附的分子氧作为受主(p 型),补偿了导致 bulk SWCNTs 中 ESR 信号的施主样(n 型)缺陷。

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