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名   称 Molecular Simulation of Resin and the Calculation of Molecular Bond Energy
科技资源标识 CSTR:11738.14.NCDC.XDA14.PP4379.2024
DOI 10.1021/acsomega.1c04342
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摘   要 In this study, average structural characteristics of amber were researched and used as an
example to establish the three-dimensional (3D) average structure of resin. Two coal samples
containing solid amber were collected from Fushun and Hunchun in Northeast China, from which pure
amber samples were separated and resin was extracted. Solid-state nuclear magnetic resonance (13C
NMR) spectroscopy was used to obtain structural information of amber, and matrix-assisted laser
desorption ionization time-of-flight mass spectrometry was performed on the resins to determine their
molecular mass. The results of these studies revealed that the average structure of amber was dominated
by cycloalkane, with a small amount of aromatic carbon, and there were almost no aliphatic chains in the
structure. The molecular masses of the compounds in the resin were mainly in the range 99−750 Da,
and the average molecular mass was ∼370 Da. To characterize the resin chemical structure, two 3D
molecular models based on density functional theory were established taking amber as the example, and
the relevant molecular bond energies were calculated. Based on these models, the interactions among
the components in oil were studied, and the binding energies of the different molecules were calculated.
In summary, in this study, amber was used as a medium to establish an accurate molecular model of
resin and proved that compared to hydrocarbon compounds, resin molecules were more likely to interact with bitumen.
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作者 Liang Tian
数据量 6.8 MiB
论文类型: journal
论文网址: https://doi.org/10.1021/acsomega.1c04342
期刊名称: ACS Omega
出版时间: 2021-10-26
引用和标注
数据引用
Liang Tian. Molecular Simulation of Resin and the Calculation of Molecular Bond Energy. 国家冰川冻土沙漠科学数据中心(http://www.ncdc.ac.cn), 2024. https://cstr.cn/CSTR:11738.14.NCDC.XDA14.PP4379.2024.
Liang Tian. Molecular Simulation of Resin and the Calculation of Molecular Bond Energy. 国家冰川冻土沙漠科学数据中心(http://www.ncdc.ac.cn), 2024. https://www.doi.org/10.1021/acsomega.1c04342.
许可协议
知识共享许可协议   本作品采用 知识共享署名 4.0 国际许可协议进行许可。

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