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1.
Methyl groups from chain scission and H-crosslinks have been identified by solid-state nuclear magnetic resonance in amorphous ethylene-propylene copolymers containing 23 and 36 mole % propylene after γ-irradiation to 10 MGy at 30°C. G (scission) and G (crosslink) values determined from the n.m.r. spectra and by extraction are in agreement, which suggests that the crosslinks are not clustered. This may differ from the situation in polyethylene where there is a substantial crystalline content. G(S). G(X) and the ratio G(S)/G(X) increase with increasing propylene content of the copolymers. 相似文献
2.
THz source based on optical Cherenkov radiation 总被引:1,自引:0,他引:1
3.
由于缺乏正规的标准,铝电解槽能量平衡测试中存在着一些概念混淆、计算方法和公式错误的情况,应引起测试工作者的注意,在测试计算前应认真制订方案,多查一些参考资料,核实所用公式、数据,避免发生失误。同时对于类似计算,由于计算机的应用,应尽可能采取精确算法。没必要采取一些非常粗糙的近似算法和经验值。 相似文献
4.
通过资料收集、理论预测、数据监测与分析,讨论了辽宁某市3G网络基站中典型基站的电磁环境。结果表明,理论预测与实际监测结果差距不大,各典型基站的电磁辐射功率密度均低于国家标准限值8μW/cm2,对该地区的电磁环境影响不大。对保护环境提出了相应的对策措施. 相似文献
5.
6.
Johan F. Prins 《Materials Research Innovations》1998,1(4):243-253
Two identical, high purity, natural type IIa diamonds, which displayed the ubiquitous blue cathodoluminescence (CL) band
at ≈ 2.9 eV, as well as an indication of the corresponding green band at ≈ 2.4 eV, have been equivalently doped by using extremely
low dose B+- and C+-ion CIRA-implantations respectively. Comparative CL measurements showed changes in the intensities of the 2.9 and 2.4 eV
bands and the generation of bands at ≈ 4 eV, as well as at ≈ 3.5 and ≈ 4.6 eV (the latter two in the B+-CIRA diamond). The results are commensurate with the model (proposed previously) in which the 2.9 and 4 eV bands are generated
respectively by electron-hole recombinations at negatively charged acceptor- and positively charged donor-like, intrinsic
defects. The present results indicate that Coulomb interactions between the latter defects and (at least partially) compensated,
negatively charged, boron acceptors, generate the 3.5 and 4.6 eV bands, which may be considered as higher energy (≈ 0.6 eV)
replicas of the 2.9 and 4 eV bands. In both cases, two electrons and a hole interact just before the hole combines with an
electron. Such a configuration of charges seems related to, and could possibly be described as, a type of ”ionised exciton
molecule”, where the ”bonding” of two negative ”nuclei” is facilitated by the presence of the hole. The CL measurements further
indicate that the 2.4 eV band forms when a high enough density of, in this case, neutral acceptors are present. These neutral
acceptors compete with the valence band to supply holes for recombination at the negatively charged, acceptor-type, intrinsic
defects which are, in the absence of the boron, responsible for the generation of the blue, 2.9 eV band.
Received: 5 December 1997 / Accepted: 13 December 1997 相似文献
7.
Lithium‐Ion Batteries: Excimer Ultraviolet‐Irradiated Carbon Nanofibers as Advanced Anodes for Long Cycle Life Lithium‐Ion Batteries (Small 38/2016)
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8.
从结构设计角度出发,根据航天平台(主要是卫星)的工作模式、轨道空间等特殊性,并结合型号的工程经验,对系统和设备结构设计的多个方面特殊性进行了一定的阐述,从而让我们了解航天电子设备的结构设计特点、重点和原则,指导我们通过合理的布局设计和指标综合来实现结构设计要求. 相似文献
9.
10.
Crystallization and infrared radiation properties of iron ion doped cordierite glass-ceramics 总被引:1,自引:0,他引:1
Shu-Ming Wang Feng-Hua KuangQing-Zhi Yan Chang-Chun GeLong-Hao Qi 《Journal of Alloys and Compounds》2011,509(6):2819-2823
Heterogeneous ion solution is an important method to improve the wanted property of polycrystalline materials. In this paper, for the purpose of infrared radiation property modification, different contents Fe2O3 were doped in MgO-Al2O3-SiO2 system glasses. The effects of Fe2O3 doping on nucleation mechanism, crystallization behaviors and especially infrared radiation properties of this cordierite-crystalline based glass-ceramics were systematically investigated by means of differential thermal analysis (DTA), X-ray diffraction (XRD), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS). The results show that, the doping of iron ion can promote the phase separation of this magnesium aluminosilicate glass, and therefore change the crystallization mechanism of this glass from surface crystallization to bulk crystallization. The iron ion incorporates into the crystal structure of cordierite by mean of substituting Mg2+ in M site. The substitution of Fe3+ to Mg2+ can form the vacant site of Mg2+ cations. For the effects of lattice distortion, impurity and vacancy defects which caused by the incorporation of iron ion, the infrared radiation performance of cordierite based glass-ceramics can be improved effectively. 相似文献