[1] Fu Y., Zhu H., Schrader A.W., Liang D., Ding Q., Joshi P., Hwang L., Zhu X.Y, Jin S.,
Nanowire Lasers of Formamidinium Lead Halide Perovskites and Their Stabilized Alloys with Improved Stability,
Nano Lett.,16, 1000–1008 (2016).
[2] صفائی، م.؛
روش تهیه، مکانیسم رشد و کاربرد نانولوله های تیتانیا/تیتاناتی،
نشریه شیمی و مهندسی شیمی ایران، 34: 1 تا 22 (1394).
[4] Pan Z.W., Dai Z.R., Wang Z.L.,
Nanobelts of Semiconducting Oxides,
Science, 291: 1947-1949 (2001).
[5] Ahire D.V., Shinde S.D., Patil G.E., Thakur K.K., Gaikwad V.B., Wagh V.G., Jain G.H.,
Preparation of MoO3 Thin Films by Spray Pyrolysis and its Gas Sensing Performance,
Int. J. Smart Sense. Intelligent Syst., 5: 592-605 (2012).
[6] Arulraj A., Goutenoire F., Tabellout M., Bohnke O., Lacorre P.,
Synthesis and Characterization of the Anionic Conductor System La2Mo2O9-0.5xFx (x = 0.02−0.30), Chem. Mater., 14: 2492-2498 (2002).
[9] Sunu S.S., Prabhu E., Jayaraman V., Guanasekar K.J., Seshariji T.K., Guanasekaran T.,
Electrical Conductivity and Gas Sensing Properties of MoO3,
Sens. Actuators B,
101: 161–174, (2004).
[12] Somani P.R., Radhakrishnan S.,
Electrochromic Materials and Devices: Present and Future,
Mater. Chem. Phys.77: 117-133 (2002).
[15] Bach U., Corr D., Lupo D., Pichot F., Ryan M.,
Nanomaterials-Based Electrochromics for Paper-Quality Displays,
Adv. Mater.,
14: 845-848 (2002).
[17] Michailovski A., Grunwaldt J.D., Baiker A., Kiebach R., Bensch W., Patzke G.R.,
Studying the Solvothermal Formation of MoO3 Fibers by Complementary In Situ EXAFS/EDXRD Techniques,
Angew. Chem. Int. Ed. 44:5643-5647 (2005).
[22] Yan M.Y., Shen Y., Zhao L., Li Z.,
Synthesis and Photochromic Properties of EDTA-Induced MoO3 Powder,
Mater. Res. Bull. 46: 1648-1653 (2011).
[27] خانی، وجیهه؛ شریفی، لیلا؛ پیامی، آرش؛ کوهانی، حسین؛ میرحسینی، سیدحسین،
تهیه نانوپودر روی اکسید به روش سوختن ژل و استفاده از آن در ساخت پوششهای مقاوم به خوردگی کامپوزیتی پلیمر/ روی اکسید،
نشریه شیمی و مهندسی شیمی ایران، (2)
34: 1 تا 11 (1394).
[28] Yu. Posudievsky O., Biskulova S.A., Pokhodenko V.D.,
New Polyaniline–MoO3 Nanocomposite as a Result of Direct Polymer Intercalation,
J. Mater. Chem. 12: 1446-1449 (2002).
[29] Subba-Reddy C.V., Qi Y.Y., Jin W., Zhu Q.Y., Deng Z.R., Chen W., Mho S.I.,
An Electrochemical Investigation on (MoO3+PVP+PVA) Nanobelts for Lithium Batteries,
J. Solid State Electrochem.,11: 1239-1243 (2007).
[31] Subba-Reddy C.V., Walker Jr. E.H., Wen C., Mho S.,
Hydrothermal Synthesis of MoO3 Nanobelts Utilizing Poly(ethylene glycol),
J. Power Sources,
183: 330–333 (2008).
[34] Mordike B.L., Ebert T.,
Magnesium: Properties-Applications-Potential,
Mater. Sci. Eng. A, 302: 37–45 (2001).
[35] Zhao Y, Liu J, Zhou Y, Zhang Z, Xu Y, Naramoto H and Yamamoto S,
Preparation of MoO3 Nanostructures and Their Opticalproperties,
J. Phys.: Condens. Matter, 15: L547–L552 (2003).