胶体纳米晶体的摩尔法生物学应用

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摘要

纳米晶体是分子的集合,可以放在一起产生晶体形式的药物,表面覆盖一层薄薄的表面活性剂。量子点在生物成像、生物工程和环境研究方面有广泛的应用,但在生物医学药物输送方面的应用较少。纳米晶体是由纳米缺阵产生的,纳米缺阵是一种微小的药物颗粒。对于弱溶性药物,纳米晶体是一种商业上可行的配方。湿法铣削是一种灵活的、通用的纳米晶体制造技术。利用纳米晶体结构设计了几种递送方法。水晶脱毛液采用微创新,当轻轻按摩到皮肤上时,毛发就会从皮肤上聚集和分离。可重新填充和充电,多年使用免费。皮肤,手臂,四肢,胸部,头部都是安全的地方使用水晶脱毛器。研究意义:非材料是由单晶或多晶原子组成的化学粒子,至少有一个长度超过100微米。它基于经典的点,也就是纳米粒子。有机纳米晶体水合铁是生物学中铁蛋白的基本核心,是许多生态系统的重要组成部分。它们是通过爆轰在CWP衬底上产生的。方法:可选:导带偏置、电容密度、带隙和动态常数。评价偏好:Si3N4, Al2O3, ZrO, HfO2, Ta2O5。结果:“从结果中可以看出,ZrO和is获得了第一名,而Si3N4获得了最低名”。结论:“MOORA中纳米晶体数据集的价值表明它的结果是ZrO和top ranking”。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biological Applications of Colloidal Nano Crystals Using the MOORE Method
Introduction: Nano crystals are collections of molecule that may be put together to generate crystalline forms of drugs that are covered in a thin layer of surfactant. Quantum dots offer a wide range of uses in biology imaging, bioengineering, and environmental research, but less so in biomedicine for drug delivery. Nano crystals are created as nano absences, which are tiny medication particles. For medications that are weakly soluble, nano crystal is a commercially feasible formulation. A flexible and all-purpose manufacturing technique for nano crystalline is wet milling. Several delivery methods have been devised using nano crystalline structures. The crystals hair remover uses micro innovation to cause hairs to gather and separate from the flesh when it is gently massaged into the skin. Refillable and rechargeable-free for years of use. Skin, arms, limbs, chest, head back are all safe places to apply Crystal Hair Extractor. Research significance: A nonmaterial is a chemical particle made up of atoms in a mono or poly-crystalline form and having at least one length more than 100 micrometers. It is based on classical dots, which are nano particles. Organic nano crystal ferri hydrites have been identified as the basic core of ferritin in biology and are significant elements of many ecosystems. They are produced on CWP substrates by detonation. Methodology: Alternative: Conduction band offset, capacitive density, band gap, and dynamic constant. Evaluation Preference: Si3N4, Al2O3, ZrO, HfO2, Ta2O5. Result: “from the result it is seen that ZrO and is got the first rank whereas is the Si3N4 got is having the lowest rank”. Conclusion: “The value of the dataset for nano crystals in MOORA shows that it results in ZrO and top ranking”.
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