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https://doi.org/10.1002/smtd.201600023
Title: | Nanocrystallization: An Effective Approach to Enhance the Performance of Organic Molecules | Authors: | Fateminia, SM Ali Wang, Ziqiao LIU BIN |
Keywords: | Science & Technology Physical Sciences Technology Chemistry, Physical Nanoscience & Nanotechnology Materials Science, Multidisciplinary Chemistry Science & Technology - Other Topics Materials Science PHARMACEUTICAL NANOCRYSTALS DRUG NANOCRYSTALS INDUCED EMISSION SOLUBLE DRUGS WAVE-GUIDE DELIVERY TECHNOLOGY PARTICLES CRYSTALLIZATION NANOPARTICLES |
Issue Date: | 13-Mar-2017 | Publisher: | John Wiley and Sons Inc. | Citation: | Fateminia, SM Ali, Wang, Ziqiao, LIU BIN (2017-03-13). Nanocrystallization: An Effective Approach to Enhance the Performance of Organic Molecules. Small Methods 1 (3). ScholarBank@NUS Repository. https://doi.org/10.1002/smtd.201600023 | Abstract: | Organic nanocrystals have attracted great research interest in recent years due to their superior physical and chemical properties as compared to their amorphous counterparts. Higher photoluminescence intensity, steadier dissolution, and greater structural stability are a few examples of these properties, making nanocrystals an excellent choice for a wide range of applications, like electronics, bioimaging, and pharmaceuticals. Here, the principles of the most important nanocrystallization methods for organic compounds are elaborated. The discussion comprises the most important top-down and bottom-up approaches reported so far, explaining their advantages and limitations. To address the limitations of these methods, a new bottom-up concept of stress-induced seed-assisted nanocrystallization is proved to be universally applicable to different organic molecules. To close, the future perspectives in the field are discussed. | Source Title: | Small Methods | URI: | https://scholarbank.nus.edu.sg/handle/10635/170692 | ISSN: | 2366-9608 | DOI: | 10.1002/smtd.201600023 |
Appears in Collections: | Staff Publications Elements |
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93. Nanocrystallization_An Effective Approach to Enhance the Performance of Organic Molecules.doc | Accepted version | 1.26 MB | Microsoft Word | OPEN | Post-print | View/Download |
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