4.7 Review

Recent advances in modification of novel carbon-based composites: Synthesis, properties, and biotechnological/biomedical applications

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Summary: Graphene quantum dots (GQDs) have attracted great interest for their exceptional properties and potential applications in cancer diagnosis and treatment. Factors such as size, surface functionalization, and biocompatibility play crucial roles in determining the effectiveness of GQDs in biological systems. Toxicity issues remain a challenge for the clinical development of GQDs-based therapeutic agents, and further research is needed to address this.

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Summary: Graphene Quantum Dots (GQDs), zero-dimensional nanoparticles derived from carbon-based sources, show great potential in energy storage applications. This review paper critically evaluates the synthesis techniques of GQDs for increased capacitance, energy conversion, retention capability, and stability in energy storage applications.

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Effect of oil palm leaf-based carbon quantum dot on nematic liquid crystal and its electro-optical effects

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Article Chemistry, Physical

One-step hydrothermal synthesis of N-S-GQDs/Bi2S3 microrods with highly photocatalytic performance for Cr(VI) reduction

Zhenmin Zhang et al.

Summary: In this study, novel N,S co-doped graphene quantum dots modified Bi2S3 microrods were prepared via a facile hydrothermal method. The introduction of N,S-GQDs increased the catalyst's specific surface area and accelerated the migration of photogenerated carriers, leading to enhanced photocatalytic performance for chromium reduction. The composite N,S-GQDs/Bi2S3 microrods showed a significant improvement in reducing Cr(VI) to Cr(III) compared to bare Bi2S3, reaching a reduction rate of 70.3% in 80 minutes.

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Carbon Quantum Dot Conjugated Copper(II) Phthalocyanine Integrating BiVO4 Semiconductor for Photocatalytic Water Oxidation

Shiming Xu et al.

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JOURNAL OF PHYSICAL CHEMISTRY C (2021)

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Deep-injection floating-catalyst chemical vapor deposition to continuously synthesize carbon nanotubes with high aspect ratio and high crystallinity

Sung-Hyun Lee et al.

Summary: The DI-FCCVD technique enables continuous synthesis of carbon nanotubes with high aspect ratio and high crystallinity at a high production rate. The carbon nanotube fiber produced from this technique demonstrates comparable performance to state-of-the-art carbon fibers, making it suitable for widespread industrial applications.

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Insights of doxorubicin loaded graphene quantum dots: Synthesis, DFT drug interactions, and cytotoxicity

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Summary: Carbon nanomaterials such as graphene quantum dots (GQDs) and graphene oxide nanosheets (GO) exhibit different drug loading capacities and release rates. GO showed the highest DOX loading capacity, while GQDs1 had the highest release rate. In terms of cytotoxicity and biosafety, GQDs1 was the most efficient in delivering DOX into cells with no noticeable cytotoxicity against WI-38 cells.

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Hydrothermal synthesis of N-doped carbon quantum dots and their application in ion-detection and cell-imaging

Tong-Yang Shen et al.

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Tao Wang et al.

Summary: The 3DHG/PS composite cathode for lithium sulfur batteries enhances electron and ion transport speed and reduces volume expansion issues, effectively lowering the fading rate. Moreover, the avoidance of soluble lithium polysulfides formation further reduces the shuttling effect, demonstrating high capacity and rate performance.

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Summary: Carbon, one of the most abundant elements on Earth, has various allotropic modifications like graphene, which have shown potential in delivering drugs more efficiently, especially for cancer treatment.

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Ahmed A. Almarasy et al.

Summary: The comparison between SWCNTs produced by super-growth CVD and improved-arc discharge methods, after surface chemical modification, showed similar modification rates but higher regularity in two-dimensional films for SWCNTs from the improved-arc discharge method.

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UV-irradiated hydrothermal synthesis of reduced graphene quantum dots for electrochemical applications

S. Veeresh et al.

Summary: This study investigates the structural and electrochemical properties of graphene quantum dots (GQDs) and reduced graphene quantum dots (rGQDs) after UV irradiation. Chemical modifications were detected using FT-IR and XRD, while TEM and AFM were used to observe the microstructure. Electrochemical tests showed strong electrochemical activity and controllable capacitance behavior in GQDs and rGQDs.

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Carbon quantum dots by submerged arc discharge in water: Synthesis, characterization, and mechanism of formation

F. J. Chao-Mujica et al.

Summary: This study reported the synthesis of fluorescent CQDs using the submerged arc discharge method, with a size distribution of 1-5nm. The internal structure and spectra of the produced CQDs were analyzed, showing dual-band fluorescence emission characteristics. The CQDs were evaluated as fluorescence markers for in vitro studies, demonstrating their potential biocompatibility and application in cell culture visualization.

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V. D. Nithya

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Jingyuan Shan et al.

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Osmium catalyzed growth of vertically aligned and small-diameter single-walled carbon nanotubes by alcohol catalytic chemical vapor deposition

Takahiro Maruyama et al.

Summary: Using Os catalyst in a cold-wall CVD system, researchers successfully grew SWCNTs with diameters less than 1 nm on SiO2/Si substrates, without the need for an alumina buffer layer or cocatalyst. Their findings suggest that period 6 platinum-group metals may be good catalysts for highly efficient growth of small-diameter SWCNTs.

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A naturally fluorescent protein C-phycoerythrin and graphene oxide bio-composite as a selective fluorescence 'turn off/on' probe for DNA quantification and characterization

Tonmoy Ghosh et al.

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Somayeh Marouzi et al.

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