Porous molecular networks formed by the self-assembly of positively-charged trigonal building blocks at the liquid/solid interfaces.
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Summary
Tris-(2-hydroxybenzylidene)triaminoguanidinium salts having six alkyl chains with proper spacing served as new molecular building blocks for the formation of porous honeycomb networks by van der Waals interaction between interdigitated alkyL chains at the liquid/graphite interfaces.
- Type
- article
- Published
- 2014-06-20
- Cited by
- 5
- References
- 34
- OpenAlex
- https://openalex.org/W2014593814
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9738126
Keywords
Alkyl, van der Waals force, Honeycomb, Porosity, Graphite
References
- The site-selective molecular recognition of ternary architectures by using supramolecular nanoporous networks at a liquid-solid interface.
- Solvent effects on two-dimensional molecular self-assemblies investigated by using scanning tunneling microscopy
- Electrochemical and in situ STM studies of anomalous phosphate adsorption induced on Zn UPD at Au(111) in the presence of halide ions in aqueous phosphate solutions
- Thermodynamical equilibrium of binary supramolecular networks at the liquid-solid interface.
- Temperature-induced structural phase transitions in a two-dimensional self-assembled network.
- A theoretical approach to the STM imaging of adsorbates on the graphite surface
- Synthesis of dehydrobenzo[18]annulene derivatives and formation of self-assembled monolayers: implications of core size on alkyl chain interdigitation.
- Supramolecular chemistry at interfaces: molecular recognition on nanopatterned porous surfaces.
- Mounting freestanding molecular functions onto surfaces: the platform approach.
- Solution-growth kinetics and thermodynamics of nanoporous self-assembled molecular monolayers.
- Supramolecular surface-confined architectures created by self-assembly of triangular phenylene-ethynylene macrocycles via van der Waals interaction.
- Rational design of a double-walled tetrahedron containing two different C3-symmetric ligands.
- Two-dimensional porous molecular networks of dehydrobenzo[12]annulene derivatives via alkyl chain interdigitation.
- Single-molecule dynamics in a self-assembled 2D molecular sieve.
- 2D assembly of metallacycles on HOPG by shape-persistent macrocycle templates.
- The two-dimensional self-assembled n-alkoxy-substituted stilbenoid compounds and triphenylenes studied by scanning tunneling microscopy
- Anion adsorption driving 2D crystallization of C60 at the ionic liquid [bmim][PF6]/Au(1 1 1) interface
- Tailoring bicomponent supramolecular nanoporous networks: phase segregation, polymorphism, and glasses at the solid-liquid interface.
- Commensurability and Mobility in Two-Dimensional Molecular Patterns on Graphite
- Controlling molecular deposition and layer structure with supramolecular surface assemblies
Cited by
- A highly sensitive C3-symmetric Schiff-base fluorescent probe for Cd2+.
- Adaptive Building Blocks Consisting of Rigid Triangular Core and Flexible Alkoxy Chains for Self-Assembly at Liquid/Solid Interfaces
- Host-Guest Chemistry in Integrated Porous Space Formed by Molecular Self-Assembly at Liquid-Solid Interfaces.
- Influence of Different Substitution Patterns on the 2D Crystalline Aggregation of Small Molecules on HOPG Surfaces.
- Biasing the Hierarchy Motifs of Nanotoroids: from 1D Nanotubes to 2D Porous Networks
- Triaminoguanidinium-Based Ligands in Supramolecular Chemistry
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