2018
DOI: 10.1007/s12633-018-9996-8
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EPR Spectroscopic Studies of Neutron-Irradiated Nanocrystalline Silicon Carbide (3C-SiC)

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Cited by 29 publications
(2 citation statements)
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“…As shown in Fig. S3(a), the strong EPR signal at g = 2.002 and the weak one at g = 2.007 can be attributed to Si vacancies (Siv) and Co vacancies (Cov), respectively, which suggest divacancy and a slightly higher Siv concentration in the AM-CoSi alloy [39]. Based on these results, the configuration of the AM-CoSi alloy is schematically illustrated in Fig.…”
Section: Synthesis and Characterizationmentioning
confidence: 73%
“…As shown in Fig. S3(a), the strong EPR signal at g = 2.002 and the weak one at g = 2.007 can be attributed to Si vacancies (Siv) and Co vacancies (Cov), respectively, which suggest divacancy and a slightly higher Siv concentration in the AM-CoSi alloy [39]. Based on these results, the configuration of the AM-CoSi alloy is schematically illustrated in Fig.…”
Section: Synthesis and Characterizationmentioning
confidence: 73%
“…Titanium carbide, like other materials at this scale, showcases unique functional attributes and distinctive physical properties [15][16][17]. Considering these inherent characteristics of nanomaterials, our research endeavors encompass a comprehensive investigation into the effects of ionizing irradiation on diverse types of nanomaterials [18][19][20][21][22][23][24][25][26][27][28][29]. The considerable specific surface area of nanomaterials can give rise to a discernible difference in surface heat transport, influencing various physical processes, and particularly exerting a noteworthy impact on thermophysical phenomena.…”
Section: Introductionmentioning
confidence: 99%