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A fully conjugated organic polymer via Knoevenagel condensation for fast separation of uranium

https://doi.org/10.1016/j.jhazmat.2020.123802
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33/33 checkable references clean · checked 2026-07-23

Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

3 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 33 checked references that resolve
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Materials for the Recovery of Uranium from Seawater
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The effect of pH on the U(VI) sorption on graphene oxide (GO): A theoretical study
resolves10.1021/jacs.8b07450
Layer-Stacking-Driven Fluorescence in a Two-Dimensional Imine-Linked Covalent Organic Framework
resolves10.1039/C4TA04878D
Introduction of amino groups into acid-resistant MOFs for enhanced U( <scp>vi</scp> ) sorption
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Functionalised magnetic nanoparticles for uranium adsorption with ultra-high capacity and selectivity
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Uranium removal from groundwater by natural clinoptilolite zeolite: Effects of pH and initial feed concentration
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Synthesis of conjugated microporous polymer nanotubes with large surface areas as absorbents for iodine and CO <sub>2</sub> uptake
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Chemical sensing in two dimensional porous covalent organic nanosheets
resolves10.1021/acsami.7b07573
POM Constructed from Super-Sodalite Cage with Extra-Large 24-Membered Channels: Effective Sorbent for Uranium Adsorption
resolves10.1016/j.cej.2018.01.089
Hydrothermal carbon superstructures enriched with carboxyl groups for highly efficient uranium removal
resolves10.1016/j.cej.2018.09.140
Plasma-enhanced amidoxime/magnetic graphene oxide for efficient enrichment of U(VI) investigated by EXAFS and modeling techniques
resolves10.1007/s10967-016-5003-2
Synthesis of novel functional hydrothermal carbon spheres for removal of uranium from aqueous solution
resolves10.1039/C5TA04406E
Surface functionalized manganese ferrite nanocrystals for enhanced uranium sorption and separation in water
resolves10.1021/acsami.6b09681
Pore-Free Matrix with Cooperative Chelating of Hyperbranched Ligands for High-Performance Separation of Uranium
resolves10.1021/acsami.7b01711
Functionalized Porous Aromatic Framework for Efficient Uranium Adsorption from Aqueous Solutions
resolves10.1039/C8EE01438H
Engineering robust metal–phenolic network membranes for uranium extraction from seawater
resolves10.1021/ja308028n
Layered Metal Sulfides Capture Uranium from Seawater
resolves10.1039/c2jm33178k
Metal silicate nanotubes with nanostructured walls as superb adsorbents for uranyl ions and lead ions in water
resolves10.1039/C6CC05188J
Novel thiophene-bearing conjugated microporous polymer honeycomb-like porous spheres with ultrahigh iodine uptake
resolves10.1039/C6RA06807C
Rapid extraction of uranium ions from seawater using novel porous polymeric adsorbents
resolves10.1039/C6CC03536A
Extended conjugated microporous polymers for photocatalytic hydrogen evolution from water
resolves10.1039/C4NJ01256A
The synthesis of a manganese dioxide–iron oxide–graphene magnetic nanocomposite for enhanced uranium( <scp>vi</scp> ) removal
resolves10.1007/s11426-019-9492-4
Synthesis of novel nanomaterials and their application in efficient removal of radionuclides
resolves10.1021/jacs.8b08452
Control Interlayer Stacking and Chemical Stability of Two-Dimensional Covalent Organic Frameworks via Steric Tuning
resolves10.1002/advs.201900547
Ammoniating Covalent Organic Framework (COF) for High‐Performance and Selective Extraction of Toxic and Radioactive Uranium Ions
resolves10.1039/C7TA02684F
Polyoxime-functionalized magnetic nanoparticles for uranium adsorption with high selectivity over vanadium
resolves10.1039/C8TA02875C
Conjugated microporous polymers bearing phosphonate ligands as an efficient sorbent for potential uranium extraction from high-level liquid wastes
resolves10.1002/anie.201905713
An Olefin‐Linked Covalent Organic Framework as a Flexible Thin‐Film Electrode for a High‐Performance Micro‐Supercapacitor
resolves10.1039/C3TA13949B
Simple small molecule carbon source strategy for synthesis of functional hydrothermal carbon: preparation of highly efficient uranium selective solid phase extractant
resolves10.1039/C7TA07320H
Highly selective adsorption of uranium in strong HNO <sub>3</sub> media achieved on a phosphonic acid functionalized nanoporous polymer
resolves10.1016/j.jcis.2016.02.017
Nano-diamond particles functionalized with single/double-arm amide–thiourea ligands for adsorption of metal ions
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Fully Conjugated Two‐Dimensional sp<sup>2</sup>‐Carbon Covalent Organic Frameworks as Artificial Photosystem I with High Efficiency
resolves10.1016/j.apsusc.2019.144403
Highly efficient enrichment mechanism of U(VI) and Eu(III) by covalent organic frameworks with intramolecular hydrogen-bonding from solutions
The 3 references without a DOI — listed, not checked
no DOI — not checkedCovalent organic frameworks as a decorating platform for utilization and affinity enhancement of chelating sites for radionuclide sequestration
no DOI — not checkedSignificantly enhanced uranium extraction from seawater with mass produced fully amidoximated nanofiber adsorbent
no DOI — not checkedRecent advances in carbon nitride-based nanomaterials for the removal of heavy metal ions from aqueous solution
What this badge says. CiteStamped means the CHECKABLE references of this work were clean at the dated check: each resolved to a known work in a public registry, and none carried a retraction notice at that time. It says nothing about the quality, findings, or importance of the work itself, and nothing about references deposited without a DOI.

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