Jigna R Bhamore
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Explore the profile of Jigna R Bhamore including associated specialties, affiliations and a list of published articles.
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11
Citations
132
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Recent Articles
1.
Dickerson B, Gonzalez D, Sowinski R, Xing D, Leonard M, Kendra J, et al.
Nutrients
. 2024 Oct;
16(19.
PMID: 39408325
Background: Previous trials have displayed augmented intracellular vitamin C concentrations in the leukocytes at 24 h after acute supplementation with 1000 mg calcium ascorbate (CA), compared to ascorbic acid (AA)....
2.
Bhamore J, Park J, Kailasa S, Park T
Luminescence
. 2024 Sep;
39(9):e4895.
PMID: 39239921
Easy, economical, and swift detecting tools are very demanded for assaying various chemical species. The introduction of label-free paper-based read-out devices has significantly reached the demand of analytical science for...
3.
Ghosh S, Gul A, Park C, Kim M, Xu P, Hoon Baek S, et al.
Chemosphere
. 2021 Apr;
279:130515.
PMID: 33862360
Convenient one-pot synthetic route for the fabrication of carbon dots (CDs) from Tagetes erecta flower (TEF), named as "TEF-CDs', through solvo(hydro)-thermal carbonization of the TEF was developed. The TEF-CDs revealed...
4.
Ghosh S, Bhamore J, Malek N, Murthy Z, Kailasa S
Spectrochim Acta A Mol Biomol Spectrosc
. 2019 Mar;
215:209-217.
PMID: 30840923
Herein, we fabricated fluorescent gold nanoclusters (Au NCs) by using trypsin as a ligand. The fabricated trypsin-Au NCs emit bright red color fluorescence upon the exposure of 365 nm UV...
5.
Bhamore J, Jha S, Park T, Kailasa S
J Photochem Photobiol B
. 2019 Jan;
191:150-155.
PMID: 30639997
Natural resources have widely been used as precursors for the preparation of ultra-small carbon dots (C-dots) due to ease of availability, low cost and C-dots with high quantum yields (QYs)....
6.
Koduru J, Kailasa S, Bhamore J, Kim K, Dutta T, Vellingiri K
Adv Colloid Interface Sci
. 2018 Mar;
256:326-339.
PMID: 29549999
Silver nanoparticles (Ag NPs) have recently emerged as promising materials in the biomedical sciences because of their antimicrobial activities towards a wide variety of microorganisms. Nanomaterial-based drug delivery systems with...
7.
Bhamore J, Jha S, Basu H, Singhal R, Murthy Z, Kailasa S
Anal Bioanal Chem
. 2018 Feb;
410(11):2781-2791.
PMID: 29480389
Herein, fluorescent gold nanoclusters (Au NCs) were obtained by one-pot synthetic method using bovine serum albumin (BSA) and bromelain as templates. As-synthesized fluorescent Au NCs were stable and showed bright...
8.
Bhamore J, Jha S, Singhal R, Kailasa S
J Fluoresc
. 2016 Oct;
27(1):125-134.
PMID: 27688066
In this work, water dispersible fluorescent carbon nanocrystals (NCs) were synthesized by a simple, green and low cost hydrothermal method using Syzygium cumini (jamun) as a carbon source at 180 ...
9.
Mehta V, Chettiar S, Bhamore J, Kailasa S, Patel R
J Fluoresc
. 2016 Sep;
27(1):111-124.
PMID: 27679993
In this work, highly luminescent carbon dots (CDs) were synthesized by the hydrothermal method at 170 °C for 12 h using pasteurized milk as a carbon source. The prepared CDs...
10.
Rawat K, Bhamore J, Singhal R, Kailasa S
Biosens Bioelectron
. 2016 Aug;
88:71-77.
PMID: 27478105
In this work, tyrosine-protected gold nanoparticles (Tyr-Au NPs) were fabricated by one-step reduction of Au ion using Tyr as a reducing and capping agent under microwave irradiation. The Tyr-Au NPs...