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Mark T Swihart

Explore the profile of Mark T Swihart including associated specialties, affiliations and a list of published articles. Areas
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Articles 141
Citations 1564
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Recent Articles
1.
Asatryan R, Hudzik J, Amiri V, Swihart M
Molecules . 2025 Feb; 30(3). PMID: 39942627
The current paradigm of low-T combustion and autoignition of hydrocarbons is based on the sequential two-step oxygenation of fuel radicals. The key chain-branching occurs when the second oxygenation adduct (OOQOOH)...
2.
Liu S, Dun C, Yang F, Tung K, Wierzbicki D, Ghose S, et al.
Nat Commun . 2024 Oct; 15(1):9365. PMID: 39477932
Metal-organic frameworks (MOFs) are highly attractive porous materials with applications spanning the fields of chemistry, physics, biology, and engineering. Their exceptional porosity and structural flexibility have led to widespread use...
3.
Leon J, Oetiker N, Torres N, Bruna N, Oskolkov E, Lei P, et al.
Microb Cell Fact . 2024 Sep; 23(1):248. PMID: 39267051
Background: Rare-earth sulfide nanoparticles (NPs) could harness the optical and magnetic features of rare-earth ions for applications in nanotechnology. However, reports of their synthesis are scarce and typically require high...
4.
Liu S, Dun C, Jiang Q, Xuan Z, Yang F, Guo J, et al.
Nat Commun . 2024 Feb; 15(1):1167. PMID: 38326434
The Hume-Rothery rules governing solid-state miscibility limit the compositional space for new inorganic material discovery. Here, we report a non-equilibrium, one-step, and scalable flame synthesis method to overcome thermodynamic limits...
5.
Joseph J, Malone T, Abraham S, Dutta A, Gupta S, Kuzmin A, et al.
Adv Mater . 2023 Sep; 36(4):e2305684. PMID: 37725635
Conjugated polymers with chiral side chains are of interest in areas including chiral photonics, optoelectronics, and chemical and biological sensing. However, the low dissymmetry factors of most neat polymer thin...
6.
Hu L, Chen K, Lee W, Kisslinger K, Rumsey C, Fan S, et al.
Adv Mater . 2023 Apr; 35(26):e2301007. PMID: 37002918
Nanoparticles (NPs) at high loadings are often used in mixed matrix membranes (MMMs) to improve gas separation properties, but they can lead to defects and poor processability that impede membrane...
7.
Qiao L, Fu Z, Zhao W, Cui Y, Xing X, Xie Y, et al.
Chem Sci . 2023 Feb; 14(5):1205-1217. PMID: 36756340
Branching phenomena are ubiquitous in both natural and artificial crystallization processes. The branched nanostructures' emergent properties depend upon their structures, but their structural tunability is limited by an inadequate understanding...
8.
Kumar A, Chen K, Thundat T, Swihart M
ACS Appl Mater Interfaces . 2023 Jan; 15(4):5439-5448. PMID: 36668703
Hydrogen (H), as a chemical energy carrier, is a cleaner alternative to conventional fossil fuels with zero carbon emission and high energy density. The development of fast, low-cost, and sensitive...
9.
Saggu I, Singh S, Chen K, Xuan Z, Swihart M, Sharma S
ACS Sens . 2023 Jan; 8(1):243-253. PMID: 36647806
High performance with lower power consumption is one among the essential features of a sensing device. Minute traces of hazardous gases such as NO are difficult to detect. Tin disulfide...
10.
Joseph J, Abraham S, Dutta A, Baev A, Swihart M, Prasad P
J Phys Chem Lett . 2022 Sep; 13(39):9085-9095. PMID: 36154023
Advancing the emerging area of chiral photonics requires modeling-guided concepts of chiral material design to enhance optical activity and associated optical rotatory dispersion. Herein, we introduce conformational engineering achieved by...