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Journal Abstract Search


163 related items for PubMed ID: 36036368

  • 1. Thermal Transport Properties of Phonons in Halide Perovskites.
    Jung Y, Lee W, Han S, Kim BS, Yoo SJ, Jang H.
    Adv Mater; 2023 Oct; 35(43):e2204872. PubMed ID: 36036368
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  • 2. Halide Perovskites: Thermal Transport and Prospects for Thermoelectricity.
    Haque MA, Kee S, Villalva DR, Ong WL, Baran D.
    Adv Sci (Weinh); 2020 May; 7(10):1903389. PubMed ID: 32440477
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  • 3. Phonon Speed, Not Scattering, Differentiates Thermal Transport in Lead Halide Perovskites.
    Elbaz GA, Ong WL, Doud EA, Kim P, Paley DW, Roy X, Malen JA.
    Nano Lett; 2017 Sep 13; 17(9):5734-5739. PubMed ID: 28806090
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  • 4. Tuning Thermal Conductivity of Hybrid Perovskites through Halide Alloying.
    Wang G, Fan H, Chen Z, Gao Y, Wang Z, Li Z, Lu H, Zhou Y.
    Adv Sci (Weinh); 2024 Jul 13; 11(25):e2401194. PubMed ID: 38647250
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  • 6. All-Inorganic Halide Perovskites as Potential Thermoelectric Materials: Dynamic Cation off-Centering Induces Ultralow Thermal Conductivity.
    Xie H, Hao S, Bao J, Slade TJ, Snyder GJ, Wolverton C, Kanatzidis MG.
    J Am Chem Soc; 2020 May 20; 142(20):9553-9563. PubMed ID: 32320237
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  • 8. Merits and Challenges of Ruddlesden-Popper Soft Halide Perovskites in Electro-Optics and Optoelectronics.
    Chen Z, Guo Y, Wertz E, Shi J.
    Adv Mater; 2019 Jan 20; 31(1):e1803514. PubMed ID: 30368915
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  • 15. Solution growth of single crystal methylammonium lead halide perovskite nanostructures for optoelectronic and photovoltaic applications.
    Fu Y, Meng F, Rowley MB, Thompson BJ, Shearer MJ, Ma D, Hamers RJ, Wright JC, Jin S.
    J Am Chem Soc; 2015 May 06; 137(17):5810-8. PubMed ID: 25871732
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  • 16. Engineering band gap and electronic transport in organic-inorganic halide perovskites by superlattices.
    Singh R, Kottokkaran R, Dalal VL, Balasubramanian G.
    Nanoscale; 2017 Jun 29; 9(25):8600-8607. PubMed ID: 28534909
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