Scaling-up molecular logic to meso-systems via self-assembly
Abstract
Abstract Due to the small size and biocompatibility of molecules, molecular logic-based computation is a gateway to the informational basis of life processes. Logic-based computation operates widely with discrete molecules of up to nanometric sizes. The contribution of molecule-based bulk materials of milli/centimetric size to the field has begun in more recent years. However, artificial molecule-based meso-scale systems which intrinsically perform logic operations are very rare. Here, we show that self-assembled systems consisting of cyclophane octacarboxylates and a cationic surfactant can perform such functions, where a membrane itself behaves as a Reset-Set Flip-Flop which is integrated with 7 more logic elements. Now that molecular logic-based computation operates across a wide range of contiguous size-scales, the way opens for its general use in information processing aspects of biology and synthetic biology.
Article Details
Authors (12)
Ze-Qing Chen
Brian Daly
Chao-Yi Yao
Hannah S. N. Crory
Yikai Xu
Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering, Feringa Nobel Prize Scientist Joint Research Center, Frontiers Science Center for Materiobiology and Dynamic Chemistry, Institute of Fine Chemicals, School of Chemistry and Molecular Engineering
Ziwei Ye
H. Q. Nimal Gunaratne
Ayumi Kimura
Seiichi Uchiyama
Steven E. J. Bell
Eric V. Anslyn
Department of Chemistry
A. Prasanna de Silva