Difference between revisions of "Thermally driven self assembly"
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Wikipedia: [http://en.wikipedia.org/wiki/Self-assembly self assembly]; [http://en.wikipedia.org/wiki/Molecular_self-assembly molecular self assembly] | Wikipedia: [http://en.wikipedia.org/wiki/Self-assembly self assembly]; [http://en.wikipedia.org/wiki/Molecular_self-assembly molecular self assembly] | ||
− | * In [[technology level 0]] that is today, brownian assembly is already extensively in use (e.g. structural DNA nanotechnology) | + | * In [[technology level 0]] and [[technology level I|I]] that is today, brownian assembly is already extensively in use (e.g. structural DNA nanotechnology) |
− | * In [[technology level I]]: [[mechanosynthesis|brownian mechanosynthesis]] could be an intermediate step to advanced APM systems. | + | * In [[technology level I]] and [[technology level II|II]]: [[mechanosynthesis|brownian mechanosynthesis]] could be an intermediate step to advanced APM systems. |
* In [[technology level II]] and [[technology level III|III]]: [[locking mechanisms|self assisted assembly]] will be very useful. | * In [[technology level II]] and [[technology level III|III]]: [[locking mechanisms|self assisted assembly]] will be very useful. |
Revision as of 14:05, 3 May 2014
There's huge amount of literature on brownian assembly (or more commonly called self assembly)
Wikipedia: self assembly; molecular self assembly
- In technology level 0 and I that is today, brownian assembly is already extensively in use (e.g. structural DNA nanotechnology)
- In technology level I and II: brownian mechanosynthesis could be an intermediate step to advanced APM systems.
- In technology level II and III: self assisted assembly will be very useful.