A phenomenological study is carried out on a complex two-component di ff usion-reacting system in gel, that is, the Cd-1,3-bis(4-pyridyl) propane (Cd-bpp) coordination polymer. The latter can exist in three solid forms, which exploit a 1: 1 correspondence among the Cd /bpp ratio, the crystal structure and the crystal morphology (1 /2: bipyramids; 2 /3: needles; 1 /3: plates). The aim was to clarify the role of key physicochemical variables (reactant concentrations, composition of the solvent and density of the transport medium) in determining the chemical nature and the morphology of the final crystallization products. The gel method was tested in a variety of di ff erent crystallization configurations, including single and double di ff usion techniques. The density of the gel primarily a ff ects the morphology of the synthesized crystals, with denser media favouring the needle-like 2 /3 Cd-bpp species and diluted ones the 1 /2 Cd-bpp bipyramidal one. However, higher densities of the gel are generally associated to strained crystals. The solvent composition is also important, as for example the 1 /2 Cd-bpp bipyramids require at least a minimum amount of ethanol to appear. We demonstrated that in gel the strict " equality" stoichiometric criteria for metal-to-ligand ratios can be sometimes eluded, as non-equilibrium concentrations can be locally attained. In this respect, the crystallization geometry was proven to act as a key tool to influence the crystallization output, as it determines the direction and magnitude of the concentration gradients. Finally, the use of U tubes to perform one-pot screenings of a large part of the crystallization space is discussed.

Phase Stability and Morphology of Gel Grown Crystals: The Case of CdCl2-bpp Polymeric System / L. Lo Presti, M. Moret, S. Rizzato. - In: CRYSTALS. - ISSN 2073-4352. - 9:7(2019 Jul 16), pp. 363.1-363.20. [10.3390/cryst9070363]

Phase Stability and Morphology of Gel Grown Crystals: The Case of CdCl2-bpp Polymeric System

L. Lo Presti
Primo
;
S. Rizzato
Ultimo
2019

Abstract

A phenomenological study is carried out on a complex two-component di ff usion-reacting system in gel, that is, the Cd-1,3-bis(4-pyridyl) propane (Cd-bpp) coordination polymer. The latter can exist in three solid forms, which exploit a 1: 1 correspondence among the Cd /bpp ratio, the crystal structure and the crystal morphology (1 /2: bipyramids; 2 /3: needles; 1 /3: plates). The aim was to clarify the role of key physicochemical variables (reactant concentrations, composition of the solvent and density of the transport medium) in determining the chemical nature and the morphology of the final crystallization products. The gel method was tested in a variety of di ff erent crystallization configurations, including single and double di ff usion techniques. The density of the gel primarily a ff ects the morphology of the synthesized crystals, with denser media favouring the needle-like 2 /3 Cd-bpp species and diluted ones the 1 /2 Cd-bpp bipyramidal one. However, higher densities of the gel are generally associated to strained crystals. The solvent composition is also important, as for example the 1 /2 Cd-bpp bipyramids require at least a minimum amount of ethanol to appear. We demonstrated that in gel the strict " equality" stoichiometric criteria for metal-to-ligand ratios can be sometimes eluded, as non-equilibrium concentrations can be locally attained. In this respect, the crystallization geometry was proven to act as a key tool to influence the crystallization output, as it determines the direction and magnitude of the concentration gradients. Finally, the use of U tubes to perform one-pot screenings of a large part of the crystallization space is discussed.
coordination polymers; crystal growth; gel growth technique; crystal morphology
Settore CHIM/03 - Chimica Generale e Inorganica
Settore CHIM/02 - Chimica Fisica
   Highly absorptive microporous materials for gas storage and separation
   FONDAZIONE CARIPLO
   2012-0921

   Fondo per il finanziamento delle attività base di ricerca - DIPARTIMENTO DI CHIMICA
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
16-lug-2019
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/660864
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