Javascript must be enabled to continue!
Clathrates
View through CrossRef
AbstractPolymer clathrates are a fascinating class of crystalline host–guest compounds in which at least one component consists of a polymer species. In these compounds, the main component acts as the host, forming a cage‐like structure around the molecules of the guest. Polymer host–guest compounds can be distinguished in “polymer clathrates,” “crystalline polymer‐inclusion complexes,” “crystalline‐polymer molecular complex,” or “polymer intercalates.”Polymer clathratesare crystalline solids in which low molecular mass guest species are hosted inside cages or cavities of molecular size, generated by polymer chains.Crystalline polymer‐inclusion complexesare crystals comprising a polymer guest within a low molecular mass host whereascrystalline‐polymer molecular complexesare the crystalline molecular complex between different polymers. Finally,polymer intercalatesare sandwich‐type inclusion compounds in which the guest molecules are entrapped in between layers of closely packed polymer chains. In the present article, the crystal structure and the main features of the most studied systems of each class, together with those of the nanoporous polymer crystals (ie, a polymer crystal presenting empty volume elements that can host low molar mass guest species) that can be obtained by removing the low molar mass guest species from some polymer host–guest compounds, are discussed. A review of the most promising applications in material science and technology of this class of host–guest compounds is also presented.
Title: Clathrates
Description:
AbstractPolymer clathrates are a fascinating class of crystalline host–guest compounds in which at least one component consists of a polymer species.
In these compounds, the main component acts as the host, forming a cage‐like structure around the molecules of the guest.
Polymer host–guest compounds can be distinguished in “polymer clathrates,” “crystalline polymer‐inclusion complexes,” “crystalline‐polymer molecular complex,” or “polymer intercalates.
”Polymer clathratesare crystalline solids in which low molecular mass guest species are hosted inside cages or cavities of molecular size, generated by polymer chains.
Crystalline polymer‐inclusion complexesare crystals comprising a polymer guest within a low molecular mass host whereascrystalline‐polymer molecular complexesare the crystalline molecular complex between different polymers.
Finally,polymer intercalatesare sandwich‐type inclusion compounds in which the guest molecules are entrapped in between layers of closely packed polymer chains.
In the present article, the crystal structure and the main features of the most studied systems of each class, together with those of the nanoporous polymer crystals (ie, a polymer crystal presenting empty volume elements that can host low molar mass guest species) that can be obtained by removing the low molar mass guest species from some polymer host–guest compounds, are discussed.
A review of the most promising applications in material science and technology of this class of host–guest compounds is also presented.
Related Results
Viscous relaxation of Pluto's ice shell below Sputnik Planitia
Viscous relaxation of Pluto's ice shell below Sputnik Planitia
AbstractThe surface of Pluto is dominated by the Sputnik Planitia basin, possibly caused by an impact ~ 4 Gyr ago. To explain basin's unlikely position close to tidal axis with Cha...
Cationic Bipyridinium Derivatives in Spin Crossover Hofmann-type Clathrates : Exploring Redox Activity, Electron Transfer Properties, and Donor-Acceptor Interactions
Cationic Bipyridinium Derivatives in Spin Crossover Hofmann-type Clathrates : Exploring Redox Activity, Electron Transfer Properties, and Donor-Acceptor Interactions
Dérivés cationiques de bipyridinium dans les clathrates d'Hofmann à transition de spin : exploration de l'activité redox, des propriétés de transfert d'électrons et des interaction...
Clathrate blankets as (in)surmountable barriers for hydrothermal systems in Europa
Clathrate blankets as (in)surmountable barriers for hydrothermal systems in Europa
A key question pertaining to Europa’s habitability is whether
hydrothermal activity could be sustained for long periods of time,
enabling redox and nutrient exchange between the oc...
On the Thermoelectric Potential of Inverse Clathrates
On the Thermoelectric Potential of Inverse Clathrates
AbstractIn the context of a general survey on the thermoelectric potential of cationic clathrates, formation, crystal chemistry and physical properties were investigated for novel ...
Exchanges of salts and volatiles in Europa’s hydrosphere
Exchanges of salts and volatiles in Europa’s hydrosphere
Ocean worlds have become a major focus of interest in exobiology and planetary science due to their internal structure and dynamics [1]. Among them, Europa is one of the most promi...
Viscous relaxation of Pluto’s clathrate-insulated ice shell below Sputnik Planitia
Viscous relaxation of Pluto’s clathrate-insulated ice shell below Sputnik Planitia
AbstractSputnik Planitia, a 1000 km wide, Pluto-dominating feature, is located very close to Pluto-Charon tidal axis. To explain its position, a reorientation driven by a postimpac...
Simulation moléculaire d'hydrates de gaz mixtes en conditions astrophysiques
Simulation moléculaire d'hydrates de gaz mixtes en conditions astrophysiques
Dans ce travail de thèse, des méthodes de simulations numériques ont été utilisées pour modéliser à l'échelle moléculaire des clathrates hydrates, dans des conditions thermodynamiq...
Trifluoroethoxy‐Coated Subphthalocyanines Attract Small Arenes in Their π‐Concave Cavity
Trifluoroethoxy‐Coated Subphthalocyanines Attract Small Arenes in Their π‐Concave Cavity
AbstractX‐ray crystallographic analyses of a series of trifluoroethoxy‐substituted subphthalocyanines disclosed that a molecule of toluene is clasped at the center of the molecular...

