Crystalline Structure and Lithium-Ion Channel Formation in Self-Assembled Di-lithium Phthalocyanine: Theory and Experiments
Author:
Affiliation:
1. Department of Chemical Engineering, University of South Carolina, Columbia, South Carolina 29208, and Air Force Research Laboratory, Energy Storage & Thermal Sciences Branch, Wright-Patterson Air Force Base, Ohio 45433
Publisher
American Chemical Society (ACS)
Subject
Materials Chemistry,Surfaces, Coatings and Films,Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/jp037322k
Reference34 articles.
1. Structure and chemistry of the porphyrins. Crystal and molecular structure of the monohydrated dipyridinated magnesium phthalocyanine complex
2. Cofacial assembly of partially oxidized metallamacrocycles as an approach to controlling lattice architecture in low-dimensional molecular solids. Chemical, structural, oxidation state, transport, magnetic, and optical properties of halogen-doped [M(phthalocyaninato)O]n macromolecules, where M = Si, Ge, and Sn
3. Cofacial assembly of partially oxidized metallamacrocycles as an approach to controlling lattice architecture in low-dimensional molecular solids. Chemical and architectural properties of the "face-to-face" polymers [M(phthalocyaninato)O]n, where M = Si, Ge, and Sn
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1. MD Simulations of the Formation of Stable Clusters in Mixtures of Alkaline Salts and Imidazolium-Based Ionic Liquids;The Journal of Physical Chemistry B;2013-03-12
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4. Dilithium phthalocyanine as a catalyst for oxygen reduction in non-aqueousLi-O2cells;Journal of Porphyrins and Phthalocyanines;2012-03
5. Microscopic Structure and Dynamics of LiBF4 Solutions in Cyclic and Linear Carbonates;The Journal of Physical Chemistry B;2011-11-16
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