Compiling Control Knowledge into Preconditions for Planning in the Situation Calculus

Abstract

The redox aptitude of the dinitrido anion [Co10N2(CO)19]4- has been tested from both chemical and electrochemical points of view, together with its reactivity toward CO that induces disproportionation. In any case, through a remarkable overlapping of intermediate steps, the new anion [Co11N2(CO)21]3- (4) is eventually obtained. A detailed study of the pathways to 4 allowed the identification of three labile intermediates by their characteristic IR spectra as well as their electrochemical and paramagnetic properties. The unprecedented structure of trianion 4 has been studied in details in two different crystalline salts.

Cite

Text

Gabaldon. "Compiling Control Knowledge into Preconditions for Planning in the Situation Calculus." International Joint Conference on Artificial Intelligence, 2003. doi:10.1021/ic035133a

Markdown

[Gabaldon. "Compiling Control Knowledge into Preconditions for Planning in the Situation Calculus." International Joint Conference on Artificial Intelligence, 2003.](https://mlanthology.org/ijcai/2003/gabaldon2003ijcai-compiling/) doi:10.1021/ic035133a

BibTeX

@inproceedings{gabaldon2003ijcai-compiling,
  title     = {{Compiling Control Knowledge into Preconditions for Planning in the Situation Calculus}},
  author    = {Gabaldon, Alfredo},
  booktitle = {International Joint Conference on Artificial Intelligence},
  year      = {2003},
  pages     = {1061-1066},
  doi       = {10.1021/ic035133a},
  url       = {https://mlanthology.org/ijcai/2003/gabaldon2003ijcai-compiling/}
}