Green Synthesis of Biocompatible Chiral Gold Nanoparticles DOI Open Access
Yuan Fan, Na Li, Jiaolong Wang

et al.

Polymers, Journal Year: 2024, Volume and Issue: 16(23), P. 3333 - 3333

Published: Nov. 28, 2024

Chiral gold nanoparticles (Au NPs) have been investigated widely and shown great potential in biomedical applications, such as biosensing, combating bacterial infections tissue regeneration. However, some stabilizers reducing agents for the synthesis of chiral Au NPs can produce toxicity living organisms. Therefore, it is interesting to design green methods prepare that are nontoxic, environment-friendly, low-cost. Herein, novel biocompatible with a diameter 54.4 ± 14.9 nm were prepared by situ reduction HAuCl

Language: Английский

Metal-organic frameworks for biomedical applications: A review DOI

Mohamed Hefayathullah,

Smita Singh,

Vellaichamy Ganesan

et al.

Advances in Colloid and Interface Science, Journal Year: 2024, Volume and Issue: 331, P. 103210 - 103210

Published: June 5, 2024

Language: Английский

Citations

19

First-Principles Calculations of Group-IV Carbide Quantum Dots and Single-Layer Heterojunctions with Optical Activity and Short-Wave Infrared Emission for Efficient Gas Sensing DOI

Anirban Roy,

Deep Mondal,

Debnarayan Jana

et al.

ACS Applied Nano Materials, Journal Year: 2025, Volume and Issue: 8(4), P. 1852 - 1864

Published: Jan. 17, 2025

The recently successful large-area bottom-up synthesis of a two-dimensional honeycomb layer silicon carbide (SiC) (Phys. Rev. Lett. 2023, 130, 076203) has unquestionably outstretched the conventional routes to tackle intriguing underlying physics graphene-like monolayers with diverse functional sectors. In this work, we have tailored group-IV such as SiC, germanium (GeC), and their single-layer heterojunction (J. Appl. Phys. 2022, 132, 184301) six stable quantum dots (QDs) critically explored electronic nature, magnetic edges, transitions subsequent characterization circular dichroism (CD) high sensitivity toward environmentally hazardous gases through first principles. Quantum zigzag edges reveal spin-split nature traces fluorescence around short-wave infrared (SWIR) region. Interestingly, polar QDs SiC–GeC, however, display chiral an asymmetric point group, which been using vibrational dichroism. presence junctions between two different carbides promptly enhances gas 70%, is significantly higher than its constituents, providing alternate route map in extending boundaries environment-friendly application sector.

Language: Английский

Citations

2

A Comprehensive Review on the Enantiomeric Separation of Chiral Drugs Using Metal-Organic Frameworks DOI
Anees Abbas, Muhammad Sheraz Ahmad,

Yu-Hsiang Cheng

et al.

Chemosphere, Journal Year: 2024, Volume and Issue: 364, P. 143083 - 143083

Published: Aug. 16, 2024

Language: Английский

Citations

10

Recent developments and applications of solid membrane in chiral separation DOI
Li Ge, Xinyu Li, Guihua Zhu

et al.

Journal of Chromatography A, Journal Year: 2025, Volume and Issue: 1743, P. 465652 - 465652

Published: Jan. 2, 2025

Language: Английский

Citations

0

Anomalous Anisotropic Quasiparticle Decay Dynamics in NiPS3 Induced by Electric Dipole and Spin Ordering DOI
Jiani Cao, Bach Thanh Cong,

Xiaodong Shen

et al.

The Journal of Physical Chemistry C, Journal Year: 2025, Volume and Issue: unknown

Published: May 1, 2025

Language: Английский

Citations

0

Green Synthesis of Biocompatible Chiral Gold Nanoparticles DOI Open Access
Yuan Fan, Na Li, Jiaolong Wang

et al.

Polymers, Journal Year: 2024, Volume and Issue: 16(23), P. 3333 - 3333

Published: Nov. 28, 2024

Chiral gold nanoparticles (Au NPs) have been investigated widely and shown great potential in biomedical applications, such as biosensing, combating bacterial infections tissue regeneration. However, some stabilizers reducing agents for the synthesis of chiral Au NPs can produce toxicity living organisms. Therefore, it is interesting to design green methods prepare that are nontoxic, environment-friendly, low-cost. Herein, novel biocompatible with a diameter 54.4 ± 14.9 nm were prepared by situ reduction HAuCl

Language: Английский

Citations

0