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Michael J Reece

Explore the profile of Michael J Reece including associated specialties, affiliations and a list of published articles. Areas
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Articles 16
Citations 103
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Recent Articles
1.
Zeng C, Stenier P, Chen K, Wan K, Dong M, Li S, et al.
Mater Horiz . 2023 Jun; 10(9):3601-3609. PMID: 37323029
Carbon nanotubes (CNTs), with their combination of excellent electrical conductivity, Seebeck coefficient, mechanical robustness and environmental stability are highly desired as thermoelectric (TE) materials for a wide range of fields...
2.
Vladislavova L, Smolorz T, Orlovskaya N, Lugovy M, Reece M, Kbel S, et al.
Materials (Basel) . 2021 Jul; 14(14). PMID: 34300820
The mechanical behavior of 3 mol% YO-ZrO ceramic and 21 wt.% AlO-3 mol% YO-ZrO ceramic composite with submicron grain size was studied. Mechanical properties, such as hardness, Young's modulus, four-point...
3.
Yu J, Chen K, Azough F, Alvarez-Ruiz D, Reece M, Freer R
ACS Appl Mater Interfaces . 2020 Oct; 12(42):47634-47646. PMID: 33026220
Calcium cobaltite (CaCoO) is a promising p-type thermoelectric oxide material. Here, we present an approach to optimize the thermoelectric performance of CaCoO by controlling the chemical composition and fabrication process....
4.
Radvar E, Shi Y, Grasso S, Edwards-Gayle C, Liu X, Mauter M, et al.
ACS Appl Mater Interfaces . 2020 Apr; 12(20):22661-22672. PMID: 32283011
A molecular design approach to fabricate nanofibrous membranes by self-assembly of aromatic cationic peptides with hyaluronic acid (HA) and nanofiber alignment under a magnetic field is reported. Peptides are designed...
5.
Meng N, Ren X, Santagiuliana G, Ventura L, Zhang H, Wu J, et al.
Nat Commun . 2019 Oct; 10(1):4535. PMID: 31628311
Poly(vinylidene fluoride)-based dielectric materials are prospective candidates for high power density electric storage applications because of their ferroelectric nature, high dielectric breakdown strength and superior processability. However, obtaining a polar...
6.
Csanadi T, Castle E, Reece M, Dusza J
Sci Rep . 2019 Jul; 9(1):10200. PMID: 31308491
Bulk polycrystalline high-entropy carbides are a newly developed group of materials that increase the limited compositional space of ultra-high temperature ceramics, which can withstand extreme environments exceeding 2000 °C in...
7.
Gucci F, DIsanto F, Zhang R, Reece M, Smeacetto F, Salvo M
Materials (Basel) . 2019 Feb; 12(4). PMID: 30769842
Two commercial hybrid coatings, cured at temperatures lower than 300 °C, were successfully used to protect magnesium silicide stannide and zinc-doped tetrahedrite thermoelectrics. The oxidation rate of magnesium silicide at...
8.
Srinivasan B, Fontaine B, Gucci F, Dorcet V, Saunders T, Yu M, et al.
Inorg Chem . 2018 Oct; 57(20):12976-12986. PMID: 30285420
The quaternary AgPbSbTe compound (abbreviated as LAST) is a prominent thermoelectric material with good performance. Endotaxially embedded nanoscale Ag-rich precipitates contribute significantly to decreased lattice thermal conductivity (κ) in LAST...
9.
Zhang R, Gucci F, Zhu H, Chen K, Reece M
Inorg Chem . 2018 Sep; 57(20):13027-13033. PMID: 30256098
High-entropy compounds with compositional complexity can be designed as new thermoelectric materials. Here a data-driven model was developed, which chose suitable elements to reduce the enthalpy of formation and hence...
10.
Han G, Popuri S, Greer H, Zhang R, Ferre-Llin L, Bos J, et al.
Chem Sci . 2018 May; 9(15):3828-3836. PMID: 29780515
Anion exchange has been performed with nanoplates of tin sulfide (SnS) "soft chemical" organic-free solution syntheses to yield layered pseudo-ternary tin chalcogenides on a 10 g-scale. SnS undergoes a topotactic...