Difference between revisions of "Energy conversion"

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(Nanoscale: molecular power converters: added a few new ones)
(Nanoscale: molecular power converters: added thermomechanical converters)
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* [[chemomechanical converters]] – the link for massive and efficient energy storage that is missing today (2021)
 
* [[chemomechanical converters]] – the link for massive and efficient energy storage that is missing today (2021)
 
* [[electromechanical converters]] – two types?
 
* [[electromechanical converters]] – two types?
* [[entropomechanical converters]]
+
* [[entropomechanical converters]] – storing energy into molecular order into squeezing out molecular degrees of freedom
 +
* [[thermomechanical converters]] – (heat pump systems)
 
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* [[Diamondoid solar cell]]s – optoelectric/solarelectric converters
 
* [[Diamondoid solar cell]]s – optoelectric/solarelectric converters

Revision as of 19:40, 14 June 2021

This article is a stub. It needs to be expanded.

This article defines a novel term (that is hopefully sensibly chosen). The term is introduced to make a concept more concrete and understand its interrelationship with other topics related to atomically precise manufacturing. For details go to the page: Neologism.
todo upload scalable svg version & add split-off version

Atomically precise technology for energy conversion can:

  • solve the enegry storage problem making renewable energy storable and fossile or nuclear fission baseload power plants unnecessary
  • circumvent burning processes that unnecessarily devaluates energy

[Todo: add infographic]

Different power converters have heterogeneity residing on different size scales.

Nanoscale: molecular power converters

AP technology provides several possibilities for energy conversion that work in a mill/zip/conveyor belt like style:



The teraherz gap between radio frequencies and far infrared frequencies

  • is too high for generation by moving charges mechanically and also
  • is challenging to cover even from the electronic side – (non mechanical technology path)

Mesoscale

thermomechanical:

diamondoid heat pump system
Used base technologies can be: microcapsules, infinitesimal bearings and thermal switching cells
Note that although the efficiency is limited by the Carnough-cycle the conversion can be near reversible.

Makroscale

thermonuclear

Complex macroscopic systems made from advanced diamondoid metamaterials may lead to significant improvements here.

Related

External links