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Synthesis of linked carbon monolayers: films, balloons, tubes, and pleated sheets.


ABSTRACT: Because of their potential for use in advanced electronic, nanomechanical, and other applications, large two-dimensional, carbon-rich networks have become an important target to the scientific community. Current methods for the synthesis of these materials have many limitations including lack of molecular-level control and poor diversity. Here, we present a method for the synthesis of two-dimensional carbon nanomaterials synthesized by Mo- and Cu-catalyzed cross-linking of alkyne-containing self-assembled monolayers on SiO(2) and Si(3)N(4). When deposited and cross-linked on flat surfaces, spheres, cylinders, or textured substrates, monolayers take the form of these templates and retain their structure on template removal. These nanomaterials can also be transferred from surface to surface and suspended over cavities without tearing. This approach to the synthesis of monolayer carbon networks greatly expands the chemistry, morphology, and size of carbon films accessible for analysis and device applications.

SUBMITTER: Schultz MJ 

PROVIDER: S-EPMC2396712 | biostudies-literature | 2008 May

REPOSITORIES: biostudies-literature

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Synthesis of linked carbon monolayers: films, balloons, tubes, and pleated sheets.

Schultz Mitchell J MJ   Zhang Xiaoyu X   Unarunotai Sakulsuk S   Khang Dahl-Young DY   Cao Qing Q   Wang Congjun C   Lei Changhui C   MacLaren Scott S   Soares Julio A N T JA   Petrov Ivan I   Moore Jeffrey S JS   Rogers John A JA  

Proceedings of the National Academy of Sciences of the United States of America 20080527 21


Because of their potential for use in advanced electronic, nanomechanical, and other applications, large two-dimensional, carbon-rich networks have become an important target to the scientific community. Current methods for the synthesis of these materials have many limitations including lack of molecular-level control and poor diversity. Here, we present a method for the synthesis of two-dimensional carbon nanomaterials synthesized by Mo- and Cu-catalyzed cross-linking of alkyne-containing self  ...[more]

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