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Synthesis and Characterization of Adipate-pillared LDHs

Sun You, Xue Duan

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Abstract

Layered double hydroxides (LDHs) or hydrotalcite-like materials of the type Mg1 -xAlx(OH) 2 (Xn- ) x/n ·zH2O are most readily prepared when Xn- is the carbonate ion. Although many other LDHs undergo facile ion-exchange reactions, the carbonate ion in LDHs is known to be very difficult to replace by conventional ion-exchange. We have developed a simple synthesis of adipate-pillared LDHs of the type Mg4A12 (OH) 12 [O2C (CH2)4CO2]· 4H2O by direct reaction of free adipic acid with an LDH carbonate precursor. The materials obtained have been characterized by XRD, FT-IR and DTA. It is shown that by appropriate choice of reaction conditions, the carbonate ions in the precursor can be completely replaced by adipate ions. The adipate-pillared LDHs retain a layered structure with an interlayer distance of 1. 40urn. The interlayer adipate ions are lost on heating the material to 39℃.

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Layered double hydroxides (LDHs) or hydrotalcite-like materials of the type Mg1 -xAlx(OH) 2 (Xn- ) x/n ·zH2O are most readily prepared when Xn- is the carbonate ion. Although many other LDHs undergo facile ion-exchange reactions, the carbonate ion in LDHs is known to be very difficult to replace by conventional ion-exchange. We have developed a simple synthesis of adipate-pillared LDHs of the type Mg4A12 (OH) 12 [O2C (CH2)4CO2]· 4H2O by direct reaction of free adipic acid with an LDH carbonate precursor. The materials obtained have been characterized by XRD, FT-IR and DTA. It is shown that by appropriate choice of reaction conditions, the carbonate ions in the precursor can be completely replaced by adipate ions. The adipate-pillared LDHs retain a layered structure with an interlayer distance of 1. 40urn. The interlayer adipate ions are lost on heating the material to 39℃.

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Available abstract

Layered double hydroxides (LDHs) or hydrotalcite-like materials of the type Mg1 -xAlx(OH) 2 (Xn- ) x/n ·zH2O are most readily prepared when Xn- is the carbonate ion. Although many other LDHs undergo facile ion-exchange reactions, the carbonate ion in LDHs is known to be very difficult to replace by conventional ion-exchange. We have developed a simple synthesis of adipate-pillared LDHs of the type Mg4A12 (OH) 12 [O2C (CH2)4CO2]· 4H2O by direct reaction of free adipic acid with an LDH carbonate precursor. The materials obtained have been characterized by XRD, FT-IR and DTA. It is shown that by appropriate choice of reaction conditions, the carbonate ions in the precursor can be completely replaced by adipate ions. The adipate-pillared LDHs retain a layered structure with an interlayer distance of 1. 40urn. The interlayer adipate ions are lost on heating the material to 39℃.

Key concepts: Adipate, Layered double hydroxides, Hydrotalcite, Carbonate, Ion exchange, Adipic acid, Inorganic chemistry, Materials science

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