Advances in Chemical Engineering and Science

Advances in Chemical Engineering and Science

ISSN Print: 2160-0392
ISSN Online: 2160-0406
www.scirp.org/journal/aces
E-mail: aces@scirp.org
"Electrospun Nanofiber Membranes Containing Molecularly Imprinted Polymer (MIP) for Rhodamine B (RhB)"
written by Lei Li, Haiqing Liu, Xiulan Lei, Yunyun Zhai,
published by Advances in Chemical Engineering and Science, Vol.2 No.2, 2012
has been cited by the following article(s):
  • Google Scholar
  • CrossRef
[1] Molecularly Imprinted Membrane Produced by Electrospinning for β-Caryophyllene Extraction
Materials, 2022
[2] Preparation and Recognition Properties of Molecularly Imprinted Nanofiber Membrane of Chrysin
Polymers, 2022
[3] Synthesis of gallic acid imprinted polymer and incorporation in poly (caprolactone) mat via electrospinning.
eXPRESS Polymer …, 2021
[4] ELETROFIAÇÃO APLICADA AO DESENVOLVIMENTO DE NANOFIBRAS ADSORVENTES VISANDO O APRIMORAMENTO DE TÉCNICAS DE (MICRO) …
Química Nova, 2021
[5] Synthesis of gallic acid imprinted polymer and incorporation in poly (caprolactone) mat via electrospinning
2021
[6] Synthesis and Optimization of a Molecularly Imprinted Membrane as a Specific Absorbent to Assess the Occupational Exposure to the 5-Fluorouracil Drug
2021
[7] Conductive conduit based on electrospun poly (l-lactide-co-D, l-lactide) nanofibers containing 4-aminopyridine-loaded molecularly imprinted poly (methacrylic acid) …
Darrehchi, P Zahedi, S Safarian… - International Journal of …, 2021
[8] Selective Recognition of Herbicides in Water Using a Fluorescent Molecularly Imprinted Polymer Sensor
2020
[9] Molecularly Imprinted Polymers and Electrospinning: Manufacturing Convergence for Next‐Level Applications
2020
[10] Development of Molecularly Imprinted Membranes for Selective Determination of Urinary Ultra-Trace 5-Fluorouracil as Antineoplastic Drug Used in Chemotherapy
2020
[11] Selective Recognition of Herbicides in Water Using a Fluorescent Molecularly Imprinted Polymer Sensor.
2020
[12] Electrospun nanofibers
2020
[13] Magnetic Core-shell nanoparticles with molecularly imprinted polymers for selective adsorption and separation of adenine
2019
[14] Quartz Crystal Microbalance-Coated Cellulose Acetate Nanofibers Overlaid with Chitosan for Detection of Acetic Anhydride Vapor
2019
[15] Quartz crystal microbalance-coated cellulose acetate nano?bers overlaid with chitosan for detection of acetic anhydride vapor
Results in Physics, 2019
[16] Selective 2, 4-dichlorophenoxyacetic acid optosensor employing a polyethersulfone nanofiber-coated fluorescent molecularly imprinted polymer
2019
[17] Kinetic studies of graphene oxide towards the removal of rhodamine B and congo red
2019
[18] Nanofibers for Water Treatment
Handbook of Nanofibers, 2018
[19] Adsorption of methyl orange from aqueous solution onto PMMA nanofiber: Kinetics study
AIP Conference Proceedings, 2017
[20] An 'OFF–ON'fluorescent chemosensor based on rhodamine 6G-2-chloronicotinaldehyde for the detection of Al3+ ions: Part II
Sensors and Actuators B: Chemical, 2016
[21] Molecularly Imprinted Membranes: Past, Present, and Future
Chemical Reviews, 2016
[22] Synthesis of a molecularly imprinted polymer for the selective recognition of carmoisine (Azorubin E122) from pomegranate juice
Journal of separation science, 2016
[23] GENERATION OF MOLECULARLY IMPRINTED ELECTROSPUN NANOFIBERS FOR ADSORPTION OF 4-NITROPHENOL WITH QUARTZ CRYSTAL MICROBALANCE METHOD
European International Journal of Science and Technology, 2016
[24] Membrane fabrication
2015
[25] Electrospinning for Medical Applications
2015
[26] Mn-doped ZnS QDs entrapped in molecularly imprinted membranes for detection of trace bisphenol A
Analytical Methods, 2015
[27] Recent developments in molecularly imprinted polymer nanofibers and their applications
Analytical Methods, 2015
[28] Synthesis and characterization of core–shell magnetic molecularly imprinted polymers for solid-phase extraction and determination of Rhodamine B in food
Food chemistry, 2015
[29] A highly selective fluorescent chemosensor for Hg 2+ based on a squaraine-bis (Rhodamine-B) derivative: Part II
Sensors and Actuators B: Chemical, 2015
[30] Approaches for the assembly of molecularly imprinted electrospun nanofibre membranes and consequent use in selected target recognition
Food Research International, 2015
[31] An 'OFF-ON'fluorescent chemosensor based on rhodamine 6G-2-chloronicotinaldehyde for the detection of Al 3+ ions: Part II
Sensors and Actuators B: Chemical, 2015
[32] Gold nanoparticle–based colorimetric probes for dopamine detection
Thesis, 2015
[33] A highly selective fluorescent chemosensor for Hg2+ based on a squaraine–bis (rhodamine-B) derivative: Part II
Sensors and Actuators B: Chemical, 2015
[34] Emerging Tools for Recognition and/or Removal of Dyes from Polluted Sites: Molecularly Imprinted Membranes
Journal of Membrane and Separation Technology, 2014
[35] Preparation and characterization of electro-spun nanofiber membranes and their possible applications in water treatment
Separation and Purification Technology, 2013
[36] SYNTHESIS OF MIP MATERIAL SELECTIVE FOR RHODAMINE B, APLICATION OF ANALYSIS RHODAMINE B IN FOOD
Free SCIRP Newsletters
Copyright © 2006-2024 Scientific Research Publishing Inc. All Rights Reserved.
Top