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负载银簇的硅基杂化纳米颗粒制备及其SERS性能 被引量:1
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作者 文子聪 牛德超 李永生 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2021年第12期1297-1304,共8页
本研究发展了一种简便的“原位还原”策略构建负载银簇的硅基杂化纳米颗粒(Ag@SHNPs)。首先利用两亲性嵌段共聚物PS_(89)-b-PAA_(16)自组装行为和3-巯基丙基三甲氧基硅烷(MPTMS)在亲水链段PAA区域的水解缩聚反应形成有机硅胶束杂化纳米... 本研究发展了一种简便的“原位还原”策略构建负载银簇的硅基杂化纳米颗粒(Ag@SHNPs)。首先利用两亲性嵌段共聚物PS_(89)-b-PAA_(16)自组装行为和3-巯基丙基三甲氧基硅烷(MPTMS)在亲水链段PAA区域的水解缩聚反应形成有机硅胶束杂化纳米结构,再利用有机硅骨架中丰富的巯基作为还原位点,原位将银盐转化为银簇,最终得到负载银簇的硅基杂化纳米颗粒,并对该杂化纳米颗粒的形貌、结构以及成分组成作了分析。通过测试材料对不同细胞系的毒性验证了其良好的生物相容性。最后以4-巯基苯甲酸(4-MBA)为探针分子,对硅基杂化颗粒基底的表面增强拉曼散射(SERS)活性进行检测。在532 nm波长的激光激发下,4-MBA标记的硅基杂化纳米颗粒展示出明显的拉曼信号增强特性,增强因子约为10^(5)。因此,该硅基杂化基底材料在SERS生物成像和高灵敏检测方面具有潜在的应用前景。 展开更多
关键词 银团簇 限域空间 原位还原 表面增强拉曼散射
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Confined structure regulations of molybdenum oxides for efficient tumor photothermal therapy 被引量:1
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作者 Limei Qin Dechao Niu +5 位作者 Xing Qin Qiqi Sun Zicong Wen Qili Yu Yongsheng Li Jianlin Shi 《Science China Materials》 SCIE EI CAS CSCD 2021年第12期3087-3100,共14页
Molybdenum oxide nanoparticles(NPs) with tunable plasmonic resonance in the near-infrared region display superior semiconducting features and photothermal properties, which are highly related to the crystalline and de... Molybdenum oxide nanoparticles(NPs) with tunable plasmonic resonance in the near-infrared region display superior semiconducting features and photothermal properties, which are highly related to the crystalline and defective structures such as oxygen deficiencies. However,fundamental understanding on the structure-function relationship between crystalline/defective structures and photothermal properties is still unclear. To address this, herein,we have developed an "in-situ confined oxidation-reduction"strategy to regulate the defect features of molybdenum oxide NPs in the dual-mesoporous silica nanoreactor. Especially, the effects of crystalline structure/oxygen defects of molybdenum oxides on the photothermal performances were investigated by facilely tuning the amount of molybdenum resource and the reduction temperature. As a photothermal nanoagent, the optimal defective molybdenum oxide NPs encapsulated in PEGylated porous silica nanoreactor(designated as MoO_(3)@PPSNs) exhibit excellent biological stability and strong localized surface plasmon resonance effect in nearinfrared absorption range with the highest photothermal conversion efficiency up to 78.7% under 808 nm laser irradiation. More importantly, the remarkable photothermal effects of MoO_(3)@PPSNs were comprehensively demonstrated both in vitro and in vivo. Consequently, we envision that the plasmonic MoO_(3)NPs in a biocompatible porous silica nanoreactor could be used as an efficient photothermal therapy agent for photothermal ablation of tumors. 展开更多
关键词 confinement effect porous silica nanoreactor molybdenum oxide oxygen deficiency photothermal therapy
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