结论:用薄膜-超声法制成大黄素磁性纳米脂质体简便易行,大黄素的包封率仍有待进一步的提高。
Conclusion: It is easy and feasible to use membrane-ultrasound method to make the magnetic nanometer liposome of emodin, and the envelopment rate of emodin is to be further enhanced.
表面可以改变纳米磁性薄膜的结构和相变温度,畴壁动力学由此成为研究的重点。
Surface will change the structure and transition temperature of nanometer magnetic thin film, so many activities have been devoted to the domain-wall dynamics.
表面可以改变纳米磁性薄膜的结构和相变温度,畴壁动力学由此成为研究的重点。
Surface will change the structure and transition temperature of nanometer magnetic thin film, so many activities have been devoted to the domain-wall dynamics.
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