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Entgegengehaltene Nichtpatentliteratur/Zitate, in Recherche ermittelt |
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Alexeev, V. L.; Das, S.; Finegold, D. N.; Asher, S. A.: Photonic Crystal Glucose-Sensing Material for Noninvasive Monitoring of Glucose in Tear Fluid. In: Clinical Chem., 2004, Vol. 50, No. 12, Seiten 2353 ? 2360 n; Andersson, O.; Larsson, A.; Ekblad, T.; Liedberg, B.: Gradient Hydrogel Matrix for Microarray and Biosensor Applications: An Imaging SPR Study. In: Biomacromolecules, Vol. 10, No. 1, 2009, Seiten 142?148 n; Fels, J.; Orlov, S. N.; Grygorczyk, R.: The Hydrogel Nature of Mammalian Cytoplasm Contributes to Osmosensing and Extracellular pH Sensing. In: Biophys. J., Vol. 96, May 2009, Seiten 4276 – 4285 0; Fels, J.; Orlov, S. N.; Grygorczyk, R.: The Hydrogel Nature of Mammalian Cytoplasm Contributes to Osmosensing and Extracellular pH Sensing. In: Biophys. J., Vol. 96, May 2009, Seiten 4276 ? 4285 n; Gawel, K.; Barriet, D.; Sletmoen, M.; Stokke, B. T.: Responsive Hydrogels for Label-Free Signal Transduction within Biosensors. In: Sensors, 2010, Vol. 10, Seiten 4381 ? 4409 n; Hadjiloucas, S.; Keating, D. A.; Usher, M. J.; Michie, W. C.; Culshaw, B.; Konstantaki, M.; Graham, N. B.; Moran, C. R.: Hydrogel based distributed fibre optic sensor for measuring soil salinity and soil water potentials. In: Proc. IEE Colloq. Progress Fibre Optic Sensors Appl., 1995, Seiten 9/1-6, publ. by: IEE, London, UK p 0; Hu, X.; Li, G.; Li, M.; Huang, J.; Li, Y.; Gao, Y.; Zhang, Y.: Ultrasensitive Specific Stimulant Assay Based on Molecularly Imprinted Photonic Hydrogels. In: Adv. Funct. Mat., 2008, Vol. 18, Seiten 575 ? 583 n; Larsen, M.; Borisov, S. M.; Grunwald, B.; Klimant, I.; Glud, R. N.: A simple and inexpensive high resolution color ratiometric planar optode imaging approach: application to oxygen and pH sensing. In: Limnol. Oceanogr. Methods, Vol. 9, 2011, Seiten 348 -360 p 0; Lee, K.; Asher, S. A.: Photonic Crystal Chemical Sensors: pH and Ionic Strength. In: J. Am. Chem. Soc., 2000, Vol. 122, Seiten 9534 ? 9537 n; Lee, Y.-J.; Pruzinsky, S. A.; Braun, A. V.: Glucose-Sensitive Inverse Opal Hydrogels: Analysis of Optical Diffraction Response. In: Langmuir, 2004, Vol. 20, Seiten 3096 ? 3106 n; Marschall, A. J.; Young, D. S.; Kabilan, S.; Hussain, A.; Blyth, J.; Lowe, C. R.: Holographic sensors for the determination of ionic strength. In: Analyt. Chim. Acta, 2004, Vol. 527, Seiten 13 - 20 n; Richter, A.; Türke, A.; Pich, A: Controlled Double-Sensitivity of Microgels Applied to Electronically Adjustable Chemostats. In: Adv. Mater., Vol. 19, 2007, Seiten 1109 - 1112 p 0; Sharma, A. C.; Jana, T.; Kesavamoorthy, R.; Shi, L.; Virji, M. A.; Finegold, D. N.; Asher, S. A.: A General Photonic Crystal Sensing Motif: Creatinine in Bodily Fluids. In: J. Am. Chem. Soc., 2004, Vol. 126, Seiten 2971 ? 2977 n; Wencel, D.; Abel, T.; McDonagh, C.: Optical Chemical pH Sensors. In: Anal. Chem., Vol. 86, No. 1, 2014, Seiten 15 – 29 0; Wencel, D.; Abel, T.; McDonagh, C.: Optical Chemical pH Sensors. In: Anal. Chem., Vol. 86, No. 1, 2014, Seiten 15 ? 29 n; Wu, Z.; Hu, X.; Tao, C.-an, Li, Y.; Liu, J.; Yang, C.; Shen, D.; Li, G.: Direct and label-free detection of cholic acid based on molecularly imprinted photonic hydrogels. In: J. Mat. Chem., 2008, Vol. 18, Seiten 5452 ? 5458 n; Zhao, S.-P.; Cao, M.-J.; Li, L.-Y.; Xu, W.-L.: Synthesis and Properties of Photopolymerized pH-Sensitive Hydrogels of Methacrylic Acid and Biodegradable PEG-b-PCL Macromer. In: Iranian Polym. J., Vol. 20, No. 4, 2011, Seiten 329 - 340 p 0
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