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Validation of a Psychosocial Intervention on Body Image in Older People: An Experimental Design
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Inner and outer beauty.

Kenneth N Raymond1, Casey J Brown

  • 1Department of Chemistry, University of California, Berkeley, CA 94720-1460, USA. raymond@socrates.berkeley.edu

Topics in Current Chemistry
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PubMed
Summary
This summary is machine-generated.

Highly symmetrical coordination compounds are designed using principles of symmetry and pattern. These materials, including coordination polymers and supramolecular assemblies, offer unique properties for applications in gas separation, storage, and catalysis.

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Area of Science:

  • Coordination Chemistry
  • Materials Science
  • Crystallography

Background:

  • Symmetry and pattern are fundamental aesthetic and structural principles observed from macroscopic to molecular scales.
  • Crystallography highlights the deep connection between symmetry and molecular structure.
  • The appreciation for symmetry has inspired the design of highly symmetrical coordination compounds.

Purpose of the Study:

  • To discuss the design and applications of highly symmetrical coordination compounds.
  • To explore two classes of materials: extended coordination arrays and discrete supramolecular assemblies.
  • To highlight the role of symmetry in creating functional materials.

Main Methods:

  • Design of coordination polymers with enhanced porosity for gas separation and storage.
  • Construction of discrete symmetrical supramolecular assemblies.
  • Investigation of host-guest chemistry and catalytic applications.

Main Results:

  • Extended coordination polymers exhibit remarkable porosity, enabling applications in gas separation and storage.
  • Discrete symmetrical structures offer unique chemical environments for host-guest interactions.
  • Symmetrical design facilitates the creation of materials with tailored functionalities.

Conclusions:

  • Highly symmetrical coordination compounds represent a significant area of materials science.
  • These materials demonstrate potential in gas separation, storage, and catalysis.
  • The interplay of symmetry and molecular design is key to developing advanced functional materials.