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F. L. Vook 《辐射效应与固体损伤》2013,168(3-4):155-160
This paper was given as the opening address at the 1970 Albany International Conference on Radiation Effects in Semiconductors, and it attempts to establish a general overview of the field by concentrating on recent research developments and important unanswered questions. The continuing importance of impurity-defect interactions, of microscopic defect identification, and of the necessity for more theoretical calculations are emphasized. The rapid development of the field of ion implantation and its close relationship with radiation effects studies are pointed out. It is predicted that research in compound semiconductors will increase rapidly with close beneficial interaction with ion implantation studies. 相似文献
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Cross-section measurements of (n, 2n) and (n, p) reactions on 124,126,128,130,131,132Xe in the 14 MeV region and theoretical calculations of their excitation functions 下载免费PDF全文
Junhua Luo Li Jiang Juncheng Liang Fei Tuo Long He Liang Zhou 《中国物理C(英文版)》2022,46(4):044001-044001-13
The reaction cross-sections of 124Xe(n, 2n)123Xe, 126Xe(n, 2n)125Xe, 128Xe(n, 2n)127Xe, 130Xe(n, 2n)129mXe, 132Xe(n, 2n)131mXe, 130Xe(n, p)130I, 131Xe(n, p)131I, and 132Xe(n, p)132I were measured at the 13.5, 13.8, 14.1, 14.4, and 14.8 MeV neutron energies. The monoenergetic neutrons were generated via the 3H(d,n)4He reaction at the China Academy of Engineering Physics using the K-400 Neutron Generator with a solid 3H-Ti target. A high-purity germanium detector was employed to measure the activities of the product. The reactions 93Nb(n, 2n)92mNb and 27Al(n, α)24Na were adopted for neutron flux calibration. The cross sections of the (n, 2n) and (n, p) reactions of the xenon isotopes were obtained within the 13–15 MeV neutron energy range. These cross-sections were then compared with the IAEA-exchange format (EXFOR) database-derived experimental data, together with the evaluation results of the CENDL-3, ENDF/B-VIII.0, JENDL-4.0, RUSFOND, and JEFF-3.3 data libraries, as well as the theoretical excitation function obtained using the TALYS-1.95 code. The cross-sections of the reactions (except for the 124Xe(n, 2n)123Xe and 132Xe(n, p)132I) at 13.5, 13.8, and 14.1 MeV are reported for the first time in this study. The obtained results are beneficial in providing better cross-section constraints for the reactions in the 13–15 MeV region, thus improving the quality of the corresponding database. Meanwhile, these data can also be used for the verification of relevant nuclear reaction model parameters. 相似文献
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靖士侠 《广东微量元素科学》1998,5(1):23-24
近年来对微量元素锗的研究日益深入,它的药理作用愈来愈受到人们的重视。本文就其研究中的进展及抗肿瘤方面的不同观点作一概述。 相似文献
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Ge-132的羧酸阴离子与稀土离子螯合配位,生成3:1型配合物,在配合物中,Ge-132的GeO3/2基团水解为Ge(OH)3,并且不参与稀土配位,系列稀土离子配合物的结构性质基本相同,在50℃,pH值为6的水溶液中,该配合物选择性地催化5’-AMP或5‘-dAMP的磷酯键水解断裂、生成相应的核苷和磷酸,而不影响碱基与戌糖之间的苷键。 相似文献
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有机锗(锗-132)的示差脉冲极谱研究 总被引:4,自引:0,他引:4
用示差脉冲极谱法,在pH1.30H_2SO_4和3,4-二羟基苯甲醛(DHB)底液中,获得了有机锗(Ge-132)和无机锗Ge(Ⅳ)二个配位吸附极谱波,波峰分别为E_P2-0.62V和E_pl=-0.47V(υs.AgCI/Ag),Ge-132浓度在2.6×10_(-5)~3.1×10_(-3)mol/L范围内,Ge(Ⅳ)浓度在 3.1×10_(-5)~2.1×10_(-4)mol/L范围内分别与峰电流星线性关系.利用该示差脉冲极谱法可同时测定Ge-132和Ge(Ⅳ),用于有机锗营养口服液中Ge-132和Ge(Ⅳ)的测定结果满意.还探讨了Ge-132极谱波的性质,测定了有关动力学参数. 相似文献
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哺乳动物体内氨基酸及蛋白质的非酶糖化反应(Mailard反应)与糖尿病及其并发症的关系已引起广泛关注[1],β-羧乙基锗倍半氧化物(Ge-132)具有预防糖尿病和调节糖代谢的作用[2],研究Ge-132对Mailard反应的抑制作用对于开发防治糖尿病... 相似文献
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荧光法研究Ge-132对牛血清白蛋白Maillard反应的抑制作用 总被引:2,自引:0,他引:2
人体内氨基酸及蛋白质的非酶糖化反应(Maillard反应)与糖尿病及其并发症的关系已经引起广泛注意[1].有机锗化合物β-羧乙基锗倍半氧化物(Ge-132)具有预防糖尿病及调节糖代谢的作用[2]. 相似文献
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梁光裕 《广东微量元素科学》1998,5(1):63-65
为探讨Ge-132的毒副反应,对服用Ge-132的肺癌患者3083例进行长期观察。结果发现各项观察指标,治疗组与对照组均无明显差异,可认为在合理剂量下,临床长期应用Ge-132是安全的。 相似文献