声动力疗法
材料科学
纳米颗粒
金属有机骨架
结晶
金属
纳米技术
配位复合体
铂金
化学工程
有机化学
化学
催化作用
光动力疗法
冶金
吸附
工程类
作者
Tangyao Sun,Yan Wang,Wei Lu,Xuzhi Shi,Feng Gao,Tingting Wu,Sheng Wang,Xiaodan Su,Zhaogang Teng
摘要
The combination of noble metal nanoparticles with metal-organic complexes has attracted great attention for exploring new properties in biomedical application areas. So far, the preparation of noble metal nanoparticle-loaded metal-organic complexes often requires complex processes. Here, a simple coordination-crystallization approach was developed to prepare platinum nanoparticle-anchored metal-organic complexes (Pt-MOCs) by directly mixing disulfiram (DSF), chloroplatinic acid, and a reducing agent. The DSF and Pt ions first coordinate forming metal-organic complex nanospheres and then the Pt nanoparticles crystallized on the surface taking advantage of the coordination rate of the metal ions and organic ligand being greater than the reduction rate of the metal ions. The Pt-MOCs possess uniform and adjustable diameter (240-536 nm), and their surface potentials can also be modulated easily from -22 to +14 mV by adjusting the ratio of DSF and chloroplatinic acid. Phantom experiments show that the Pt-MOC nanospheres significantly improve the efficiency of singlet oxygen production after exposure to ultrasound irradiation.
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