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| Content Provider | Royal Society of Chemistry (RSC) |
|---|---|
| Author | Chang, Yun Hsuan Lee, Hung Lin Lee, Tu |
| Copyright Year | 2017 |
| Abstract | The interdependence of crystallinity, secondary building unit (SBU) formation, linker vacancy, crystal habit, photoluminescence, and surface area for UiO-66 and In-MIL-68, respectively, produced by different processing modes has been fully investigated and linked together to comprehend the relationships among SBU synthesis pathways, structures, and functional properties. The solid-state properties of UiO-66 were found to be process-sensitive, but those of In-MIL-68 except for crystal habits were mode independent, most likely due to the versatile Zr6(μ3-O)4(μ3-OH)4(CO2)12 SBU formation steps with more competing events for UiO-66 and the relatively straightforward {In(μ-O2CR)2(μ-OH)}∞ chain SBU formation steps for In-MIL-68. The reproducibility of the desired properties of metal–organic frameworks (MOFs) relies on the crystallization process designed for specific SBU formation and nucleation trajectory. |
| Starting Page | 426 |
| Ending Page | 441 |
| Page Count | 16 |
| File Format | HTM / HTML PDF |
| ISSN | 14668033 |
| Volume Number | 19 |
| Issue Number | 3 |
| Journal | CrystEngComm |
| DOI | 10.1039/c6ce02246d |
| Language | English |
| Publisher | Royal Society of Chemistry |
| Access Restriction | Open |
| Subject Keyword | Processing mode Nucleation SBU Photoluminescence Crystal habit |
| Content Type | Text |
| Resource Type | Article |
| Subject | Chemistry Condensed Matter Physics Materials Science |
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