Conductive Ni3(HITP)2 nanofilm with asymmetrical morphology prepared by gas–liquid interface self-assembly for glucose sensing DOI

Lin-an Cao,

Min Wei, Xin Guo

et al.

Ionics, Journal Year: 2024, Volume and Issue: 30(4), P. 2375 - 2385

Published: Feb. 6, 2024

Language: Английский

A review of metal–organic framework (MOF) materials as an effective photocatalyst for degradation of organic pollutants DOI Creative Commons
M. Shahnawaz Khan, Yixiang Li, Dong‐Sheng Li

et al.

Nanoscale Advances, Journal Year: 2023, Volume and Issue: 5(23), P. 6318 - 6348

Published: Jan. 1, 2023

An overview of MOFs and their composite materials for better photocatalytic performance towards organic pollutants.

Language: Английский

Citations

96

Advanced luminescent metal–organic framework (MOF) sensors engineered for urine analysis applications DOI
Brij Mohan,

Virender Virender,

Rakesh Kumar Gupta

et al.

Coordination Chemistry Reviews, Journal Year: 2024, Volume and Issue: 519, P. 216090 - 216090

Published: July 30, 2024

Language: Английский

Citations

34

A review on titanium oxide nanoparticles modified metal-organic frameworks for effective CO2 conversion and efficient wastewater remediation DOI
Zakariyya Uba Zango, Kuan Shiong Khoo, Abdurrahman Garba

et al.

Environmental Research, Journal Year: 2024, Volume and Issue: 252, P. 119024 - 119024

Published: April 30, 2024

Language: Английский

Citations

17

Understanding the Electrochemical MOF Sensors in Detecting Cancer with Special Emphasis on Breast Carcinoma Biomarkers DOI
Brij Mohan, Krunal Modi, Gurjaspreet Singh

et al.

Topics in Current Chemistry, Journal Year: 2025, Volume and Issue: 383(1)

Published: Feb. 18, 2025

Language: Английский

Citations

4

Tissue Engineering and Biosensing Applications of Carbon-Based Nanomaterials DOI Creative Commons
Seydanur Yücer, Begüm Sarac, Fatih Çiftçi

et al.

Biomedical Engineering Advances, Journal Year: 2025, Volume and Issue: unknown, P. 100145 - 100145

Published: Jan. 1, 2025

Language: Английский

Citations

2

Exploring the Biomedical Applications of Biosynthesized Silver Nanoparticles Using Perilla frutescens Flavonoid Extract: Antibacterial, Antioxidant, and Cell Toxicity Properties against Colon Cancer Cells DOI Creative Commons
Tianyu Hou,

Yurong Guo,

Wanyu Han

et al.

Molecules, Journal Year: 2023, Volume and Issue: 28(17), P. 6431 - 6431

Published: Sept. 4, 2023

The present study reports the biomimetic synthesis of silver nanoparticles (AgNPs) using a simple, cost effective and eco-friendly method. In this method, flavonoid extract Perilla frutescens (PFFE) was used as bioreduction agent for reduction metallic into nanosilver, called P. (PFFE-AgNPs). Ultraviolet–Visible (UV-Vis) spectrum showed characteristic absorption peak at 440 nm that confirmed PFFE-AgNPs. A Fourier transform infrared spectroscopic (FTIR) analysis PFFE-AgNPs revealed flavonoids are involved in capping processes. X-ray diffraction (XRD) selected area electron (SAED) patterns face-centered cubic (FCC) crystal structure transmission microscopic (TEM) indicated synthesized 20 to 70 size with spherical morphology without any aggregation. Dynamic light scattering (DLS) studies average hydrodynamic 44 nm. polydispersity index (PDI) 0.321 denotes monodispersed nature Further, highly negative surface charge or zeta potential value (−30 mV) indicates repulsion, non-aggregation, stability cytotoxic effects against cancer cell lines, including human colon carcinoma (COLO205) mouse melanoma (B16F10), IC50 concentrations 59.57 69.33 μg/mL, respectively. significant inhibition both Gram-positive (Listeria monocytogens Enterococcus faecalis) Gram-negative (Salmonella typhi Acinetobacter baumannii) bacteria pathogens. exhibited vitro antioxidant activity by quenching 1,1-diphenyl-2-picrylhydrazyl (DPPH) hydrogen peroxide (H2O2) free radicals values 72.81 92.48 µg/mL, study, we also explained plausible mechanisms biosynthesis, anticancer, antibacterial Overall, these findings suggest have multi-functional nanomaterial biomedical applications, particularly therapy infection control. However, it is important note further research needed determine safety efficacy vivo, well explore their other areas medicine.

Language: Английский

Citations

30

A mini review on metal–organic framework-based electrode materials for capacitive deionization DOI
M. Shahnawaz Khan, Zhi Yi Leong, Dong‐Sheng Li

et al.

Nanoscale, Journal Year: 2023, Volume and Issue: 15(39), P. 15929 - 15949

Published: Jan. 1, 2023

A fresh perspective of MOF-based electrode materials for better capacitive deionization (CDI) performance towards salt or brackish water.

Language: Английский

Citations

29

Tailored coordination chemistry: A novel Zn(II)-fluorescent coordination material for highly selective and sensitive detection of Hg2+ ions in aqueous environments DOI
M. Shahnawaz Khan, Samrah Kamal,

Mohd Zulkiflain

et al.

Journal of Molecular Liquids, Journal Year: 2024, Volume and Issue: 405, P. 125019 - 125019

Published: May 16, 2024

Language: Английский

Citations

11

Two Indium(III)-based Fluorescent Metal-Organic Frameworks for Highly Sensing Fe3+, 2,4-DNP, and TNP DOI
Dan Wang, Wen Li, Guanghua Li

et al.

Chemical Research in Chinese Universities, Journal Year: 2024, Volume and Issue: 40(1), P. 119 - 126

Published: Jan. 3, 2024

Language: Английский

Citations

8

Recent advances in photoelectrochemical platforms based on porous materials for environmental pollutant detection DOI Creative Commons

Shiben Liu,

Jinhua Zhan, Bin Cai

et al.

RSC Advances, Journal Year: 2024, Volume and Issue: 14(12), P. 7940 - 7963

Published: Jan. 1, 2024

This review investigated the breakthroughs in porous photoactive materials such as metal oxides, metal–organic frameworks, covalent organic graphitic carbon nitride, and MXene for PEC detection of environmental contaminants.

Language: Английский

Citations

7