Literature DB >> 26512115

A priori calculations of the free energy of formation from solution of polymorphic self-assembled monolayers.

Jeffrey R Reimers1, Dwi Panduwinata2, Johan Visser2, Yiing Chin2, Chunguang Tang2, Lars Goerigk3, Michael J Ford4, Maxine Sintic2, Tze-Jing Sum2, Michiel J J Coenen5, Bas L M Hendriksen5, Johannes A A W Elemans5, Noel S Hush6, Maxwell J Crossley7.   

Abstract

Modern quantum chemical electronic structure methods typically applied to localized chemical bonding are developed to predict atomic structures and free energies for meso-tetraalkylporphyrin self-assembled monolayer (SAM) polymorph formation from organic solution on highly ordered pyrolytic graphite surfaces. Large polymorph-dependent dispersion-induced substrate-molecule interactions (e.g., -100 kcal mol(-1) to -150 kcal mol(-1) for tetratrisdecylporphyrin) are found to drive SAM formation, opposed nearly completely by large polymorph-dependent dispersion-induced solvent interactions (70-110 kcal mol(-1)) and entropy effects (25-40 kcal mol(-1) at 298 K) favoring dissolution. Dielectric continuum models of the solvent are used, facilitating consideration of many possible SAM polymorphs, along with quantum mechanical/molecular mechanical and dispersion-corrected density functional theory calculations. These predict and interpret newly measured and existing high-resolution scanning tunnelling microscopy images of SAM structure, rationalizing polymorph formation conditions. A wide range of molecular condensed matter properties at room temperature now appear suitable for prediction and analysis using electronic structure calculations.

Entities:  

Keywords:  density functional theory; dispersion; free energy; polymorphism; self-assembled monolayers

Year:  2015        PMID: 26512115      PMCID: PMC4653194          DOI: 10.1073/pnas.1516984112

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  50 in total

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  4 in total

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2.  Faraday cage screening reveals intrinsic aspects of the van der Waals attraction.

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3.  Self-Assembly of Covalently Linked Porphyrin Dimers at the Solid-Liquid Interface.

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Journal:  Molecules       Date:  2019-08-20       Impact factor: 4.411

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  4 in total

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