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Exploiting Cooperative Catalysis for the On-Surface Synthesis of Linear Heteroaromatic Polymers via Selective C-H Activation.


ABSTRACT: Regiospecific C-H activation is a promising approach to achieve extended polymers with tailored structures. While a recent on-surface synthetic approach has enabled regioselective homocoupling of heteroaromatic molecules, only small oligomers have been achieved. Herein, selective C-H activation for dehydrogenative C-C couplings of hexaazatriphenylene by Scholl reaction is reported for the first time. By combining low-temperature scanning tunneling microscopy (STM) and atomic force microscopy (AFM), we revealed the formation of one-dimensional polymers with a double-chain structure. The details of the growth process are rationalized by density functional theory (DFT) calculations, pointing out a cooperative catalytic action of Na and Ag adatoms in steering the C-H selectivity for the polymerization.

SUBMITTER: Liu X 

PROVIDER: S-EPMC9299585 | biostudies-literature | 2022 Jan

REPOSITORIES: biostudies-literature

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Exploiting Cooperative Catalysis for the On-Surface Synthesis of Linear Heteroaromatic Polymers via Selective C-H Activation.

Liu Xunshan X   Matej Adam A   Kratky Tim T   Mendieta-Moreno Jesús I JI   Günther Sebastian S   Mutombo Pingo P   Decurtins Silvio S   Aschauer Ulrich U   Repp Jascha J   Jelinek Pavel P   Liu Shi-Xia SX   Patera Laerte L LL  

Angewandte Chemie (International ed. in English) 20211214 5


Regiospecific C-H activation is a promising approach to achieve extended polymers with tailored structures. While a recent on-surface synthetic approach has enabled regioselective homocoupling of heteroaromatic molecules, only small oligomers have been achieved. Herein, selective C-H activation for dehydrogenative C-C couplings of hexaazatriphenylene by Scholl reaction is reported for the first time. By combining low-temperature scanning tunneling microscopy (STM) and atomic force microscopy (AF  ...[more]

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