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Multifunctional 3D Hierarchical Bioactive Green Carbon-Based Nanocomposites

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This article is published in ACS Sustainable Chemistry & Engineering.The article was published on 2021-07-05. It has received 36 citations till now. The article focuses on the topics: Carbon nanotube & Carbon.

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Folic Acid-Adorned Curcumin-Loaded Iron Oxide Nanoparticles for Cervical Cancer

TL;DR: The FA@HPG@Fe3O4 nanoparticles produced in the current investigation have potential as anticancer drug delivery systems and incubation of HeLa cells with nanoparticles decreased MRI signal enhancement’s percentage and the largest alteration was observed after incubation with FA@L929 fibroblasts.
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Green metal-organic frameworks (MOFs) for biomedical applications

TL;DR: In this paper , the synthesis and biomedical application of green MOFs by analyzing their components, including green solvents, ligands, linkers, auxiliary linkers and sustainable organic precursors, were reviewed and discussed.
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Metal–Organic Frameworks (MOFs) for Cancer Therapy

TL;DR: A continued attempt has also been directed towards functionalizing MOFs via post-synthetic modification mainly by changing linkers (by altering the type, length, functionality, and charge of the linkers) or node components within the MOF framework as mentioned in this paper.
References
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Journal ArticleDOI

Improved Synthesis of Graphene Oxide

TL;DR: An improved method for the preparation of graphene oxide (GO) is described, finding that excluding the NaNO(3), increasing the amount of KMnO(4), and performing the reaction in a 9:1 mixture of H(2)SO(4)/H(3)PO(4) improves the efficiency of the oxidation process.
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MoS2 Nanoparticles Grown on Graphene: An Advanced Catalyst for the Hydrogen Evolution Reaction

TL;DR: In this article, a selective solvothermal synthesis of MoS2 nanoparticles on reduced graphene oxide (RGO) sheets suspended in solution was developed, which exhibited superior electrocatalytic activity in the hydrogen evolution reaction (HER).
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A Green Approach to the Synthesis of Graphene Nanosheets

TL;DR: A facile approach to the synthesis of high quality graphene nanosheets in large scale through electrochemical reduction of exfoliated graphite oxide precursor at cathodic potentials (completely reduced potential: -1.5 V) is reported.
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Doped Graphene Sheets As Anode Materials with Superhigh Rate and Large Capacity for Lithium Ion Batteries

TL;DR: The unique two-dimensional structure, disordered surface morphology, heteroatomic defects, better electrode/electrolyte wettability, increased intersheet distance, improved electrical conductivity, and thermal stability of the doped graphene are beneficial to rapid surface Li(+) absorption and ultrafastLi(+) diffusion and electron transport, and thus make the doping materials superior to those of pristine chemically derived graphene and other carbonaceous materials.
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An improved Hummers method for eco-friendly synthesis of graphene oxide

TL;DR: In this paper, an improved Hummers method without using NaNO3 can produce graphene oxide nearly the same to that prepared by conventional Hummers methods, which does not decrease the yield of product and simplifies the disposal of waste water because of the inexistence of Na+ and NO3− ions.
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