TAI LIEU THAM KHAO

Một phần của tài liệu Khóa luận tốt nghiệp Hóa học: Nghiên cứu cấu trúc và tính chất của vật liệu Nano Perovskite TbFeO3 tổng hợp bằng phương pháp đồng kết tủa sử dụng tác nhân Potassium Hydroxi (Trang 65 - 70)

Z. Zeng, Y. Xu, Z. Zhang, Z. Gao, M. Luo, Z. Yin, C. Zhang, J. Xu, B. Huang, F.

Luo, Y. Du and C. Yan, “Rare ~ earth — containing perovskite nanomaterials: design, synthesis, properties and applications,” Chem Soc Rev, vol. 49, no. 4, pp. 1109 —

1143, Feb. 2020.

M. Baladi, M. Amiri, H. Akbari Javar, H. Mahmoudi — Moghaddam, and M. Salavati

— Niasari, “Green synthesis of perovskite — type TbFeO:/CuO as a highly efficient modifier for electrochemical detection of methyldopa,” Journal of Electroanalytical Chemistry, vol. 915, p. 116339, Jun. 2022.

P. Mehdizadeh, Y. Orooji, O. Amiri, M. Salavati - Niasari, and H. Moayedi, “Green synthesis using cherry and orange juice and characterization of TbFeO: ceramic nanostructures and their application as photocatalysts under UV light for removal of

organic dyes in water,” J Clean Prod, vol. 252, Apr. 2020.

Tikhanova S. M, Seroglazova A. S, Chebanenko M. I, Panchuk V. V, Semenov V.

G, Volkov M. P, and Popkov V. I, “Structural, morphological, and magnetic features of granular TbFceO; perovskite synthesized via direct solution combustion

synthesis,” SSRN, May. 2023.

N. Thi Kim Chung, N. Anh Tien, C. Hong Diem, B. Xuan Vuong, “Structural and optical properties of Sr — doped NdFeOs nanoparticles prepared by a simple co —

precipitation method,” J. Chem. Sci, vol. 134, Mar. 2022.

F. J. Heiligtag and M. Nicderberger, “The fascinating world of nanoparticle research,” Materials Today, vol. 16, no. 7 = 8, pp. 262 — 271, Jul. 2013.

N. H. Hong, “Introduction to Nanomaterials: Basic Properties, Synthesis, and Characterization,” in Nano-sized Multifunctional Materials: Synthesis, Properties and Applications, Elsevier, pp. | — 19, 2019.

B. Bhushan, “Introduction to nanotechnology,” Springer Handbooks, pp. | — 19, 2017.

[9]

[10]

[12]

[13]

[14]

[15]

[16]

[17]

N. Baig, I. Kammakakam, W. Falath, and I. Kammakakam, “Nanomaterials: A review of synthesis methods, propertics, recent progress, and challenges,” Materials Advances, vol. 2, no. 6. Royal Society of Chemistry, pp. 1821 — 1871, Mar. 21, 2021.

M. Nasrollahzadeh, S. M. Sajadi, M. Sajjadi, and Z. Issaabadi, “An Introduction to Nanotechnology,” Interface Science and Technology, vol. 28, pp. 1 — 27, Jan. 2019.

P. Avyub, R. Chandra, P. Taneja, A. K. Sharma, and R. Pinto, “Synthesis of nanocrystalline material by sputtering and laser ablation at low temperatures,” Appl

Phys A Mater Sci Process, vol. 73, no. 1, pp. 67 — 73, 2001.

D. Zhang, Kai Ye, Yaochun Yao, Feng Liang, Tao Qu, Wenhui Ma, Bing Yang, Yongnian Dai, Takayuki Watanabe, “Controllable synthesis of carbon nanomaterials

by direct current are discharge from the inner wall of the chamber,” Carbon N Y,

vol. 142, pp. 278 — 284, Feb. 2019.

V. Amendola and M. Meneghetti, “Laser ablation synthesis in solution and size manipulation of noble metal nanoparticles,” Physical Chemistry Chemical Physics,

vol. 11, no. 20, pp. 3805 - 3821, Apr. 2009.

Y. Dong, X. ging Du, P. Liang, and X. lei Man, “One — pot solvothermal method to fabricate 1D - VS4 nanowires as anode materials for lithium ion batteries,” Inorg Chem Commun, vol. 115, p. 107883, May. 2020.

A. E. Danks, S. R. Hall, and Z. Schnepp, “The evolution of ‘sol — gel’ chemistry as a technique for materials synthesis,” Mater Horiz, vol. 3, no. 2, pp. 91 — 112, Feb.

2016.

M. S. Z. Shiri, W. Henderson, and M. R. Mucalo, “A Review of The Lesser-Studied Microemulsion-Based Synthesis Methodologies Used for Preparing Nanoparticle Systems of The Noble Metals, Os, Re, Ir and Rh,” Materials 2019, vol. 12, pp. 1896, Jun, 2019.

Z. Cheng and J. Lin, “Layered organic-inorganic hybrid perovskites: Structure,

optical properties, film preparation, patterning and templating engineering,”

CrystEngComm, vol. 12, no. 10, pp. 2646 — 2662, Oct. 2010.

63

[18]

[19]

[20]

[21]

[22]

[23]

[24]

[25]

[26]

[27]

E. A. R. Assirey, “Perovskite synthesis, properties and their related biochemical and industrial application,” Saudi Pharmaccutical Journal, vol. 27, no. 6. Elsevier B.V, pp. 817 - 829, Sep. 01, 2019.

AA. S. Bhalla, R. Guo, and R. Roy, “The perovskite structure — a review of its role in ceramic science and technology,” Materials Research Innovations, vol. 4, no. 1, pp. 3 — 26, 2000.

M. Johnsson and P. Lemmens, “Crystallography and Chemistry of Peroyskites,”

Novel Material, Dec. 2007.

P. Gupta, P. K. Mahapatra, and R. N. P. Choudhary, “TbFeOs Ceramic: An Exciting Colossal Dielectric with Ferroelectric Properties,” Phys Status Solidi B Basic Res,

vol. 257, no. 1, lan. 2020.

G. Niu, X. Guo, and L. Wang, “Review of recent progress in chemical stability of perovskite solar cells,” J Mater Chem A Mater, vol. 3, no. 17, pp. 8970 — 8980, Apr.

2015.

Y. Xu, Y. Yang, Y. Cai, F. Liu, Y. Liu, Y. Zhu, J. Wu, “The X protein of hepatitis B virus activates hepatoma cell proliferation through repressing melanoma inhibitory activity 2 gene,” Biochem Biophys Res Commun, vol. 416, no. 3 — 4, pp. 379 - 384, Dec, 2011.

P. Van Tuong, “Cac phương pháp tông hợp vật liệu gém,”, NXB Đại học quốc gia

Hà Nội, 2007.

T. A. Nguyen, T. L. T. Nguyen, and V. X. Bui, “Influence of the synthetic conditions on the crystal structure, magnetic and optical properties of holmium orthoferrite nanoparticles,” Journal of Materials Science: Materials in Electronics, vol. 32, no.

14, pp. 19010 - 19019, Jul. 2021.

R. Roy, “Aids in Hydrothermal Experimentation: II, Methods of Making Mixtures for Both ‘Dry’ and ‘Wet’ Phase Equilibrium Studies,” Journal of the American

Ceramic Society, vol. 39, no. 4, pp. 145 — 146, Apr. 1956.

E. Devi, B. J. Kalaiselvi, K. Madhan, D. Vanidha, S. S. Meena, and R. Kannan,

“Quantification of charge carriers participating antiferromagnetic to weak

64

[28]

[29]

[30]

[31]

[32]

[33]

[34]

ferromagnetic phase transition in Na doped LaFeO: nano multiferroics,” J App!

Phys, vol. 124, no. 8, Aug. 2018.

S. Esposito, “*Traditional’ Sol - Gel Chemistry as a Powerful Tool for the Preparation of Supported Metal and Metal Oxide Catalysts,” Materials, vol. 12, no.

4, pp. 668, Feb. 2019.

H. Yang, J. X. Zhang, G. J. Lin, T. Xian, and J. L. Jiang, “Preparation, characterization and photocatalytic properties of terbium orthoferrite nanopowder,”

Advanced Powder Technology, vol. 24, no. 1, pp. 242 - 245, lan. 2013.

P. S. Tang, Z. H. Wang, J. N. Ying, C. W. Tang, and Q. Yang, “One — step preparation of nanoparticulate TbFeO: by microwave process and its visible — light photocatalytic activity,” in Materials Science Forum, Trans Tech Publications Ltd, pp. 109 — 113, 2015.

K. D. Martinson, V. A. Ivanov, M. I. Chebanenko, V. V. Panchuk, V. G. Semenov,

and V. I. Popkov, “Facile combustion synthesis of TbFeO: nanocrystals with hexagonal and orthorhombic structure,” Nanosystems: Physics, Chemistry, Mathematics, vol. 10, no. 6, pp. 694 — 700, Dec. 2019.

P. Mehdizadeh, M. Masjedi-Arani, O. Amiri, and M. Salavati — Niasari, “Rapid microwave fabrication of new nanocomposites based on Tb — Fe — O nanostructures for electrochemical hydrogen storage application,” Fuel, vol. 304, Nov. 2021.

N. Anh Tien, H. Thi Kim Hoang, V. Olegovna Mittova, T. Thi To Nga, N. Thi Truc Linh, I. Yakovlevna Mittova, E. Viktorovna Tomina, T. Dinh Trinh, L. Thi Thanh Thuy, T. Son Cam, “Structural, Optical, and Magnetic Properties of o-TbFeO›

Nanomaterials Synthesized by the co-Precipitation Method,” ChemistrySelect, vol.

8, no. 47, Dec. 2023.

P. T. H. Duyen and N. A. Tien, “Optical and magnetic properties of orthoferrite

NdFeO: nanomaterials synthesized by simple co — precipitation method,”

Kondensirovannye Sredy Mezhfaznye Granitsy, vol. 23, no. 4, pp. 600 — 606, Dec.

2021.

65

[35]

[36]

[37]

[38]

[39]

[40]

[41]

[42]

[43]

[44]

N. A. Tiền, T. Thị Thuận, D. Hoang Phúc, “Tinh chất nhiệt và từ của vật liệu nano HoFco; tông hợp bằng phương pháp kết tủa hoá học,” Ho Chi Minh city University

of Education journal of science, vol. 18, no. 6, pp. 1161-1169, 202.

T. Đức Hiên, L. Tuan Tài, “Tir học va vat liệu từ,” NXB Bách Khoa — Ha Nội, 2008.

S. L. C. Pinho, J. S. Amaral, A. Wattiaux, M. Duttine, M. H. Delville, and C. F. G.

C. Geraldes, “Synthesis and Characterization of Rare — Earth Orthoferrite LnFeO;

Nanoparticles for Bioimaging,” Eur J Inorg Chem, vol. 2018, no. 31, pp. 3570 — 3578, Aug. 2018.

A. Chauhan, “Powder XRD Technique and its Applications in Science and Technology,” J Anal Bioanal Tech, vol. 5, no. 6, 2014.

Larry D. Hanke, PE., “Handbook Of Analytical Methods For Materials,” by Materials Evaluation and Engineering, Inc, pp. 1 — 50, 2001.

B. J. Inkson, “Scanning Electron Microscopy (SEM) and Transmission Electron Microscopy (TEM) for Materials Characterization,” in Materials Characterization

Using Nondestructive Evaluation (NDE) Methods, Elsevier Inc, pp. 17 - 43, 2016.

J. Hamuyuni, M. O. Daramola, and O. O. Oluwasina, “Energy — Dispersive X — Ray Spectroscopy: Theory and Application in Engineering and Science,” in book:

Encyclopedia of Physical Organic Chemistry, pp. | — 23, Apr. 2017.

M. Picollo, M. Aceto, and T. Vitorino, “UV — Vis spectroscopy,” Physical Sciences Reviews, vol. 4, no. 4, Apr. 2019.

A. T. Nguyen, Ph. H. Nh. Phan, I. Ya. Mittova, M. V. Knurova, and V. O. Mittova,

“The characterization of nanosized ZnFe2Os material prepared by coprecipitation,”

Nanosystems: Physics, Chemistry, Mathematics, pp. 459 — 463, Jun. 2016.

N. A. Tien, C. T. Son, V. O. Mittova, I. Ya. Mittova, E. V. Tomina, T. C. Hien and

B. X. Vuong, “Influence of Synthetic Conditions on the Crystal Structure, Optical

and Magnetic Properties of o —- EuFeOs Nanoparticles,” Coatings, vol. 13, no. 6, Jun.

2023.

Một phần của tài liệu Khóa luận tốt nghiệp Hóa học: Nghiên cứu cấu trúc và tính chất của vật liệu Nano Perovskite TbFeO3 tổng hợp bằng phương pháp đồng kết tủa sử dụng tác nhân Potassium Hydroxi (Trang 65 - 70)

Tải bản đầy đủ (PDF)

(70 trang)