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Forrest Nichols

Explore the profile of Forrest Nichols including associated specialties, affiliations and a list of published articles. Areas
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Articles 11
Citations 35
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Recent Articles
1.
Liu Q, Peng Y, Masood Z, Dubois D, Tressel J, Nichols F, et al.
Adv Mater . 2022 Dec; 35(8):e2208665. PMID: 36462218
Copper compounds have been extensively investigated for diverse applications. However, studies of cuprous hydroxide (CuOH) have been scarce due to structural metastability. Herein, a facile, wet-chemistry procedure is reported for...
2.
Pan D, Liu Q, Nichols F, Mercado R, Kuo H, Lu J, et al.
J Colloid Interface Sci . 2022 Sep; 629(Pt B):591-597. PMID: 36179578
Design and engineering of effective electrode catalysts represents a critical first step for hydrogen production by electrochemical water splitting. Nanocomposites based on ruthenium atomically dispersed within a carbon scaffold have...
3.
Rojas-Andrade M, Nguyen T, Mistler W, Armas J, Lu J, Roseman G, et al.
Nanoscale Adv . 2022 Sep; 2(3):1074-1083. PMID: 36133054
Design and engineering of graphene-based functional nanomaterials for effective antimicrobial applications has been attracting extensive interest. In the present study, graphene oxide quantum dots (GOQDs) were prepared by chemical exfoliation...
4.
Lu B, Liu Q, Wang C, Masood Z, Morris D, Nichols F, et al.
Research (Wash D C) . 2022 Jun; 2022:9756983. PMID: 35707048
Carbon-supported nanocomposites are attracting particular attention as high-performance, low-cost electrocatalysts for electrochemical water splitting. These are mostly prepared by pyrolysis and hydrothermal procedures that are time-consuming (from hours to days)...
5.
Chata G, Nichols F, Mercado R, Assafa T, Millhauser G, Saltikov C, et al.
ACS Appl Bio Mater . 2022 Jan; 4(9):7025-7033. PMID: 35006935
Graphene derivatives have been attracting extensive interest as effective antimicrobial agents. In the present study, ternary nanocomposites are prepared based on graphene oxide quantum dots (GOQD), polyaniline (PANI), and manganese...
6.
Lu B, Liu Q, Nichols F, Mercado R, Morris D, Li N, et al.
Research (Wash D C) . 2021 Feb; 2020:9167829. PMID: 33623914
Oxygen reduction reaction (ORR) plays an important role in dictating the performance of various electrochemical energy technologies. As platinum nanoparticles have served as the catalysts of choice towards ORR, minimizing...
7.
Nichols F, Chen S
Chem Rec . 2020 Sep; 20(12):1505-1515. PMID: 32975907
Conventional β-lactam antibiotics are resisted by bacteria at an increasing rate, prompting studies into the development of alternate antibiotic agents. In this personal account, we summarize recent progress in the...
8.
Nichols F, Lu J, Mercado R, Rojas-Andrade M, Ning S, Azhar Z, et al.
Langmuir . 2020 Sep; 36(39):11629-11636. PMID: 32924514
Antibiotic resistance is an imminent threat to human health, requiring the development of effective alternate antibacterial agents. One such alternative includes nanoparticle (photo)catalysts that are good at producing reactive oxygen...
9.
Liu Q, Peng Y, Li Q, He T, Morris D, Nichols F, et al.
ACS Appl Mater Interfaces . 2020 Mar; 12(15):17641-17650. PMID: 32203650
Metal-nitrogen-carbon (MNC) nanocomposites have been hailed as promising and efficient electrocatalysts toward oxygen reduction reaction (ORR), due to the formation of MN coordination moieties. However, MNC hybrids are mostly prepared...
10.
He T, Peng Y, Li Q, Lu J, Liu Q, Mercado R, et al.
ACS Appl Mater Interfaces . 2019 Nov; 11(50):46912-46919. PMID: 31755691
Rational design and engineering of high-efficiency electrocatalysts toward overall water splitting is crucial for the development of hydrogen energy technology. Herein, a facile procedure is described for the preparation of...