...
首页> 外文期刊>Nanoscale >Raman spectroscopic determination of the length, strength, compressibility, Debye temperature, elasticity, and force constant of the C-C bond in graphene
【24h】

Raman spectroscopic determination of the length, strength, compressibility, Debye temperature, elasticity, and force constant of the C-C bond in graphene

机译:拉曼光谱测定的长度,强度、压缩性、德拜温度,弹性,碳碳键的力常数石墨烯

获取原文
获取原文并翻译 | 示例

摘要

From the perspective of bond relaxation and bond vibration, we have formulated the Raman phonon relaxation of graphene, under the stimuli of the number-of-layers, the uni-axial strain, the pressure, and the temperature, in terms of the response of the length and strength of the representative bond of the entire specimen to the applied stimuli. Theoretical unification of the measurements clarifies that: (i) the opposite trends of the Raman shifts, which are due to the number-of-layers reduction, of the G-peak shift and arises from the vibration of a pair of atoms, while the D- and the 2D-peak shifts involve the z-neighbor of a specific atom; (ii) the tensile strain-induced phonon softening and phonon-band splitting arise from the asymmetric response of the C_(3v) bond geometry to the C_(2v) uni-axial bond elongation; (iii) the thermal softening of the phonons originates from bond expansion and weakening; and (iv) the pressure stiffening of the phonons results from bond compression and work hardening. Reproduction of the measurements has led to quantitative information about the referential frequencies from which the Raman frequencies shift as well as the length, energy, force constant, Debye temperature, compressibility and elastic modulus of the C-C bond in graphene, which is of instrumental importance in the understanding of the unusual behavior of graphene.
机译:从债券的角度放松和债券振动,我们制定了喇曼声子放松的刺激下,石墨烯层数、逆作法施工压力压力,温度,的的长度和强度的响应代表整个标本的债券应用刺激。测量澄清:(i)相反拉曼转变的趋势,这是由于的层数减少,G-peak转变和来自两个原子的振动,而D -和2 d-peak变化涉及到z-neighbor特定的原子;应变声子软化和phonon-band分裂不对称反应的出现C_ (3 v)债券几何C_ (2 v)逆作法施工债券伸长;声子来源于债券和扩张削弱;从债券压缩和声子的结果加工硬化。导致了定量的信息吗参考频率的拉曼频率变化以及长度、能源、力常数,德拜温度,压缩弹性模量的碳碳在石墨烯键,仪器理解的不寻常的重要性石墨烯的行为。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号