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载银二氧化硅改性硅橡胶的抗菌性能和生物安全性 被引量:3
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作者 侯晓杰 薛宝霞 +4 位作者 刘书浩 朱彦霖 牛梅 杨永珍 张利 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2023年第2期111-116,共6页
通过硫化法制备了一种载银二氧化硅(SiO2)改性抗菌硅橡胶,并采用抑菌平板法、溶血试验及细胞毒性测试对其抗菌性能及生物安全性等进行表征和分析。结果表明,在载银SiO2抗菌剂含量为20 mg/mL时,硅橡胶对大肠杆菌与金黄色葡萄球菌的抑菌... 通过硫化法制备了一种载银二氧化硅(SiO2)改性抗菌硅橡胶,并采用抑菌平板法、溶血试验及细胞毒性测试对其抗菌性能及生物安全性等进行表征和分析。结果表明,在载银SiO2抗菌剂含量为20 mg/mL时,硅橡胶对大肠杆菌与金黄色葡萄球菌的抑菌率分别达到100%和66%;溶血试验表明,抗菌硅橡胶的溶血率小于5%;且细胞毒性测试结果显示其细胞毒性为0级,表明载银SiO2改性抗菌硅橡胶具有良好的抗菌性能及生物安全性。在抗菌医用导管领域,表现出广阔的临床应用前景。 展开更多
关键词 硅橡胶 抑菌性能 溶血性 细胞毒性
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Regulating nitrogen vacancies within graphitic carbon nitride to boost photocatalytic hydrogen peroxide production 被引量:1
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作者 yanlin zhu Xuetao Liu +5 位作者 Heng Liu Guangling He Jiamin Xiao Haijiao Xie Yanyan Sun Lei Han 《SusMat》 2022年第5期617-629,共13页
Introducing nitrogen vacancies is an effective method to improve the catalytic performance of g-C_(3)N_(4)-based photocatalysts,whereas understanding how nitrogen vacancies types affect the catalytic performance remai... Introducing nitrogen vacancies is an effective method to improve the catalytic performance of g-C_(3)N_(4)-based photocatalysts,whereas understanding how nitrogen vacancies types affect the catalytic performance remains unclear.Herein,two different types of nitrogen vacancies were successfully introduced into g-C_(3)N_(4)by pyrolysis of melamine under argon and ammonia atmosphere with subsequent HNO3 oxidation.The pyrolysis atmosphere is found to have a significant influence on the introduced nitrogen vacancies type,where tertiary nitrogen groups(N_(3)C)and sp2-hybridized nitrogen atoms(N_(2)C)were the preferred sites for the formation of nitrogen vacancies under ammonia and argon pyrolysis,respectively.Moreover,nitrogen vacancies from N3C are experimentally and theoretically demonstrated to facilitate the narrowed band gap and the improved oxygen absorption capability.As expected,the optimal catalyst exhibits high H_(2)O_(2)yield of 451.8µM,which is 3.8 times higher than the pristine g-C_(3)N_(4)(119.0µM)after 4 h and good stability after10 photocatalytic runs. 展开更多
关键词 carbon nitride hydrogen peroxide nitrogen vacancies oxygen absorption
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