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Tahir Muhmood

Explore the profile of Tahir Muhmood including associated specialties, affiliations and a list of published articles. Areas
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Articles 16
Citations 25
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Recent Articles
1.
Arif M, Mahsud A, Xing H, Hannan Zahid A, Liang Q, Amjad Majeed M, et al.
J Colloid Interface Sci . 2024 Nov; 680(Pt A):1053-1066. PMID: 39549349
The catalytic efficiency of heterogeneous photocatalytic CO reduction and photo-Fenton HO activationisclosely related to the local electron density of reaction center atoms. However, electron-hole recombination from random charge transfer significantly...
2.
Ahmad F, Muhmood T
Colloids Surf B Biointerfaces . 2024 Jun; 241:114041. PMID: 38897022
Nanomaterials based therapeutics transform the ways of disease prevention, diagnosis and treatment with increasing sophistications in nanotechnology at a breakneck pace, but very few could reach to the clinic due...
3.
Ahmad I, Abohashrh M, Rahim A, Ahmad S, Muhmood T, Wen H
Spectrochim Acta A Mol Biomol Spectrosc . 2023 Jul; 302:123091. PMID: 37453386
The substantial optical features of perovskite quantum dots (PQD) lead to rapid growth in the investigation of their surface and lattice doping for optoelectronic and biochemical sensor advancements. Herein, we...
4.
Abu-Rayyan A, Ahmad I, Bahtiti N, Muhmood T, Bondock S, Abohashrh M, et al.
ACS Omega . 2023 May; 8(17):14859-14872. PMID: 37151539
Formaldehyde has become a prominent topic of interest because of its simple molecular structure, release from various compounds in the near vicinity of humans, and associated hazards. Thus, several researchers...
5.
Xiao J, Cai Z, Muhmood T, Hu X, Lin S, Hu X
Small . 2022 Jan; 18(11):e2106930. PMID: 35023633
The natural insulating property and notorious pulverization of volume variation-induced materials during cycling pares the electrochemical activity of red phosphorous (RP) for lithium/sodium-ion batteries (LIBs/SIBs). To work out these issues,...
6.
Lin S, Wang Y, Chen Y, Cai Z, Xiao J, Muhmood T, et al.
Small . 2021 Dec; 18(7):e2104224. PMID: 34866332
Lithium batteries with high electrode thickness always possess a poor battery property due to electrode polarization along the thickness direction. Herein, a concept that the electrode polarization can be reduced...
7.
Lin S, Wang Y, Chen Y, Cai Z, Xiao J, Muhmood T, et al.
ACS Appl Mater Interfaces . 2021 Aug; 13(35):41744-41752. PMID: 34436849
Constructing a stable non-dendritic lithium metal anode is the key to the development of high-energy batteries in the future. Herein, we fabricated nitrogen-doped carbon photonic crystals in situ in the...
8.
Lin S, Chen Y, Wang Y, Cai Z, Xiao J, Muhmood T, et al.
ACS Appl Mater Interfaces . 2021 Feb; 13(8):9955-9964. PMID: 33606509
Lithium-selenium (Li-Se) batteries suffer from the problems of polyselenides dissolution and volume expansion of active materials during the charge/discharge process. Moreover, the heavy atomic mass of selenium atoms limits the...
9.
Ahmad F, Mahmood A, Muhmood T
Biomater Sci . 2021 Jan; 9(5):1598-1608. PMID: 33443512
With the advancement in nanotechnology, we are experiencing transformation in world order with deep insemination of nanoproducts from basic necessities to advanced electronics, health care products and medicines. Therefore, nanoproducts,...
10.
Muhmood T, Cai Z, Lin S, Xiao J, Hu X, Ahmad F
Nanotechnology . 2020 Oct; 31(50):505602. PMID: 33006324
A novel graphene nanoplatelets (GNP) bridge between two semiconductors (AgBr and graphitic carbon nitride) was created to boost photoelectrochemical performance. The heterojunction created makes the whole system a Z-scheme catalyst....