<rdf:RDF xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:dct="http://purl.org/dc/terms/" xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#">
  <rdf:Description rdf:about="https://doi.org/10.3390/s24165119">
    <dct:isReferencedBy>OPENAIRE</dct:isReferencedBy>
    <dct:isReferencedBy>OpenAire</dct:isReferencedBy>
    <dct:isReferencedBy>ZENODO</dct:isReferencedBy>
    <dct:isReferencedBy>DOAJ</dct:isReferencedBy>
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    <dct:isReferencedBy>Europe PubMed Central</dct:isReferencedBy>
    <dct:isReferencedBy>PubMed Central</dct:isReferencedBy>
    <dct:isPartOf>Sensors</dct:isPartOf>
    <dct:license>Open Access</dct:license>
    <dct:created>2024-08-08</dct:created>
    <dc:description>&lt;?xml version='1.0' encoding='UTF-8'?&gt;&lt;article&gt;&lt;p&gt;Molecularly imprinted membranes (MIMs) have been a focal research interest since 1990, representing a breakthrough in the integration of target molecules into membrane structures for cutting-edge sensing applications. This paper traces the developmental history of MIMs, elucidating the diverse methodologies employed in their preparation and characterization on two-dimensional solid-supported substrates. We then explore the principles and diverse applications of MIMs, particularly in the context of emerging technologies encompassing electrochemistry, surface-enhanced Raman scattering (SERS), surface plasmon resonance (SPR), and the quartz crystal microbalance (QCM). Furthermore, we shed light on the unique features of ion-sensitive field-effect transistor (ISFET) biosensors that rely on MIMs, with the notable advancements and challenges of point-of-care biochemical sensors highlighted. By providing a comprehensive overview of the latest innovations and future trajectories, this paper aims to inspire further exploration and progress in the field of MIM-driven sensing technologies.&lt;/p&gt;&lt;/article&gt;</dc:description>
    <dc:subject>point-of-care testing</dc:subject>
    <dc:subject>molecularly imprinted membranes</dc:subject>
    <dc:subject>ion-sensitive field-effect transistor</dc:subject>
    <dc:subject>Chemical technology</dc:subject>
    <dc:subject>biochemical sensors</dc:subject>
    <dc:subject>TP1-1185</dc:subject>
    <dc:subject>Review</dc:subject>
    <dc:subject>02 engineering and technology</dc:subject>
    <dc:subject>0210 nano-technology</dc:subject>
    <dc:subject>all-solid-state</dc:subject>
    <dc:subject>01 natural sciences</dc:subject>
    <dc:subject>0104 chemical sciences</dc:subject>
    <dc:creator rdf:resource="https://orcid.org/0009-0002-9003-6535"/>
    <dc:creator rdf:resource="https://orcid.org/0000-0003-2380-2594"/>
    <dc:creator rdf:resource="https://orcid.org/0000-0003-0713-7897"/>
    <dc:creator>Lishuang Wang, Nan Li, Xiaoyan Zhang, Ivan Bobrinetskiy, Ivana Gadjanski, Wangyang Fu, </dc:creator>
    <dc:date>2024-08-07</dc:date>
    <dc:type>journalpaper</dc:type>
    <dct:abstract>&lt;?xml version='1.0' encoding='UTF-8'?&gt;&lt;article&gt;&lt;p&gt;Molecularly imprinted membranes (MIMs) have been a focal research interest since 1990, representing a breakthrough in the integration of target molecules into membrane structures for cutting-edge sensing applications. This paper traces the developmental history of MIMs, elucidating the diverse methodologies employed in their preparation and characterization on two-dimensional solid-supported substrates. We then explore the principles and diverse applications of MIMs, particularly in the context of emerging technologies encompassing electrochemistry, surface-enhanced Raman scattering (SERS), surface plasmon resonance (SPR), and the quartz crystal microbalance (QCM). Furthermore, we shed light on the unique features of ion-sensitive field-effect transistor (ISFET) biosensors that rely on MIMs, with the notable advancements and challenges of point-of-care biochemical sensors highlighted. By providing a comprehensive overview of the latest innovations and future trajectories, this paper aims to inspire further exploration and progress in the field of MIM-driven sensing technologies.&lt;/p&gt;&lt;/article&gt;</dct:abstract>
    <dc:title>Sensing with Molecularly Imprinted Membranes on Two-Dimensional Solid-Supported Substrates</dc:title>
    <dc:identifier>10.3390/s24165119</dc:identifier>
    <dct:references>https://doi.org/10.3390/s24165119</dct:references>
    <dct:relation>739570</dct:relation>
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