Ion-imprinted polymers (IIPs) are created based on enzyme phenomenon, where these polymers exhibit selective recognition of metal ions in the presence of matrix ions. For that reason IIPs find many applications in sensors, solid phase extraction and membrane separation of metal ions. This review focuses on the synthesis, characterization and application of IIPs
Molecularly imprinted polymers (MIPs) are applicable in a variety of different configurations. For e...
Ion imprinting technology (IIT) aims to recognize ions while retaining the unique virtues of molecul...
The introduction of ion-form polymers in the analysis of very small amounts of cations was a major s...
Ion-imprinted polymers (IIPs) are created based on enzyme phenomenon, where these polymers exhibit s...
Chemical imprinting technology has been widely used as a valuable tool in selective recognition of a...
Over the past several decades, much progress has been made in the development of ion-imprinted polym...
Molecular imprinting technology(MIT) is known as a technology for creation of tailor-made binding si...
Aquatic and terrestrial environment and human health have been seriously threatened with the release...
Aquatic and terrestrial environment and human health have been seriously threatened with the release...
The synthesis of IIP was carried out by variation of Fe(III) ion templates from Fe(NO3)3, K3[Fe(CN)...
Molecular imprinting is an effective method to create selective binding sites in polymeric matrices...
Molecular imprinting is an attractive approach for designing selective materials because it allows t...
A molecularly imprinted polymer (MIP), with the ability to bind Pb(II) ion, was prepared using the n...
Ion imprinted polymers (IIPs) draw great attention in various fields because of powerful selectivity...
Molecular Imprinting Technology (MIT) is a technique to design artificial receptors with a predeterm...
Molecularly imprinted polymers (MIPs) are applicable in a variety of different configurations. For e...
Ion imprinting technology (IIT) aims to recognize ions while retaining the unique virtues of molecul...
The introduction of ion-form polymers in the analysis of very small amounts of cations was a major s...
Ion-imprinted polymers (IIPs) are created based on enzyme phenomenon, where these polymers exhibit s...
Chemical imprinting technology has been widely used as a valuable tool in selective recognition of a...
Over the past several decades, much progress has been made in the development of ion-imprinted polym...
Molecular imprinting technology(MIT) is known as a technology for creation of tailor-made binding si...
Aquatic and terrestrial environment and human health have been seriously threatened with the release...
Aquatic and terrestrial environment and human health have been seriously threatened with the release...
The synthesis of IIP was carried out by variation of Fe(III) ion templates from Fe(NO3)3, K3[Fe(CN)...
Molecular imprinting is an effective method to create selective binding sites in polymeric matrices...
Molecular imprinting is an attractive approach for designing selective materials because it allows t...
A molecularly imprinted polymer (MIP), with the ability to bind Pb(II) ion, was prepared using the n...
Ion imprinted polymers (IIPs) draw great attention in various fields because of powerful selectivity...
Molecular Imprinting Technology (MIT) is a technique to design artificial receptors with a predeterm...
Molecularly imprinted polymers (MIPs) are applicable in a variety of different configurations. For e...
Ion imprinting technology (IIT) aims to recognize ions while retaining the unique virtues of molecul...
The introduction of ion-form polymers in the analysis of very small amounts of cations was a major s...