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Spatial Engineering Direct Cooperativity between Binding Sites for Uranium Sequestration (open access)

Spatial Engineering Direct Cooperativity between Binding Sites for Uranium Sequestration

This article gives a full account of the conceptual and experimental development from randomly distributed functionalities to a convergent arrangement that facilitates cooperative binding is given, thus conferring exceptional affinity toward the analyte of interest. The concept presented here uncovers a new paradigm in the design of efficient sorbent materials by manipulating the spatial distribution to amplify the cooperation of functions.
Date: December 4, 2020
Creator: Sun, Qi; Song, Yanpei; Aguila, Briana; Ivanov, Aleksandr S.; Bryantsev, Vyacheslav S. & Ma, Shengqian
System: The UNT Digital Library
Self-Reporting Molecularly Imprinted Polymer for Label-Free Selective Electrochemical Sensing of p-synephrine† (open access)

Self-Reporting Molecularly Imprinted Polymer for Label-Free Selective Electrochemical Sensing of p-synephrine†

This article is taken from the Proceedings of the 5th International Symposium on Sensor Science (I3S 2017). Molecularly imprinted polymers (MIPs) can be used in applications in selective chemosensing.
Date: December 4, 2017
Creator: Lach, Patrycja; Cieplak, Maciej; Sharma, Piyush S.; Sosnowska, Marta; D'Souza, Francis & Kutner, Wlodzimierz
System: The UNT Digital Library
Semi-Covalent Imprinting for Selective Protein Sensing at a Femtomolar Concentration Level (open access)

Semi-Covalent Imprinting for Selective Protein Sensing at a Femtomolar Concentration Level

This abstract introduces the development of an inventive new technique for protein imprinting.
Date: December 4, 2017
Creator: Dabrowski, Marcin; Cieplak, Maciej; Sharma, Piyush S.; Borowicz, Pawel; Noworyta, K.; Kuhn, Alexander et al.
System: The UNT Digital Library