Comparison of cytotoxic and photoluminescence properties between Fe2O3 and Fe3O4

被引:7
|
作者
Deepthi, S. [1 ,2 ]
Vidya, Y. S. [3 ]
Manjunatha, H. C. [4 ]
Sridhar, K. N. [1 ]
Manjunatha, S. [5 ]
Munirathnam, R. [4 ]
Ganesh, T. [2 ]
机构
[1] Govt First Grade Coll, Dept Phys, Kolar 563101, Karnataka, India
[2] Bharathidasan Univ, Rajah Serfoji Govt Coll, Dept Phys, Tiruchirappalli 613005, Tamil Nadu, India
[3] Lal Bahadur Shastri Govt First Grade Coll, Dept Phys, Bangalore 560032, Karnataka, India
[4] Govt Coll Women, Dept Phys, Kolar 563101, Karnataka, India
[5] BMS Coll Engn, Dept Chem, Bengaluru 60019, Karnataka, India
关键词
Hematite; Magnetite; Coprecipitation; Photoluminescence; Cytotoxic; OXIDE ALPHA-FE2O3 NANOPARTICLES; MAGNETIC-PROPERTIES; COMPLEXES; PRECIPITATION;
D O I
10.1016/j.inoche.2023.111101
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The water soluble Fe2O3 and Fe3O4 nanoparticles (NPs) were synthesized by coprecipitation method followed by calcination. The Bragg reflections confirm the formation of hexagonal alpha-Fe2O3 and cubic inverse spinel structure Fe3O4 NPs. The surface morphology consists of irregular shaped agglomerated NPs. The direct energy band gap estimated from Wood and Tauc's plot was found to be 1.75 and 1.81 eV for alpha-Fe2O3 and Fe3O4 NPs respectively. The photoluminescence spectra and CIE clearly show the blue emission from both samples whereas high intensity is observed for Fe3O4 NPs. The cytotoxic properties of Fe2O3 and Fe3O4 NPs were studied and analyzed against MDA-MB-231 breast cancer cell line and compared with standard drug Cisplatin. Compared to Fe2O3,Fe3O4 NPs shows good cytotoxic property more than Cisplatin. Thus, the present synthesized water soluble Fe2O3 and Fe3O4 NPs might be a good candidate as a nanophosphor in display technology and a anticancer drug carrier.
引用
收藏
页数:7
相关论文
共 50 条
  • [21] Facile synthesis of capped γ-Fe2O3 and Fe3O4 nanoparticles
    Bourlinos, A. B.
    Bakandritsos, A.
    Georgakilas, V.
    Tzitzios, V.
    Petridis, D.
    JOURNAL OF MATERIALS SCIENCE, 2006, 41 (16) : 5250 - 5256
  • [22] Nanowire structural evolution from Fe3O4 to ε-Fe2O3
    Ding, Yong
    Morber, Jenny Ruth
    Snyder, Robert L.
    Wang, Zhong Lin
    ADVANCED FUNCTIONAL MATERIALS, 2007, 17 (07) : 1172 - 1178
  • [23] THE EFFECTS OF NUCLEATION AND GROWTH ON THE REDUCTION OF FE2O3 TO FE3O4
    HAYES, PC
    GRIEVESON, P
    METALLURGICAL TRANSACTIONS B-PROCESS METALLURGY, 1981, 12 (02): : 319 - 326
  • [24] Facile synthesis of capped γ-Fe2O3 and Fe3O4 nanoparticles
    A. B. Bourlinos
    A. Bakandritsos
    V. Georgakilas
    V. Tzitzios
    D. Petridis
    Journal of Materials Science, 2006, 41 : 5250 - 5256
  • [25] Magnetic characteristics of Fe3O4/α-Fe2O3 hybrid cubes
    Ma, Ji
    Chen, Kezheng
    Zhang, Xiaodan
    JOURNAL OF APPLIED PHYSICS, 2012, 111 (03)
  • [26] Solvothermal Synthesis and Characterization of Fe3O4 and γ-Fe2O3 Nanoplates
    Lu, Jian
    Jiao, Xiuling
    Chen, Dairong
    Li, Wei
    JOURNAL OF PHYSICAL CHEMISTRY C, 2009, 113 (10): : 4012 - 4017
  • [27] A solvothermal transformation of α-Fe2O3 nanocrystals to Fe3O4 polyhedrons
    Chen, Liqiao
    Xiong, Qingfeng
    Li, Wenlin
    Li, Junpeng
    Yu, Xuan
    CRYSTENGCOMM, 2015, 17 (45): : 8602 - 8606
  • [28] Hydrothermal synthesis of ultrafine α-Fe2O3 and Fe3O4 powders
    Li, Y
    Liao, H
    Qian, Y
    MATERIALS RESEARCH BULLETIN, 1998, 33 (06) : 841 - 844
  • [29] The Fe3O4 origin of the "Biphase" reconstruction on α-Fe2O3(0001)
    Lanier, Courtney H.
    Chiaramonti, Ann N.
    Marks, Laurence D.
    Poeppelmeier, Kenneth R.
    SURFACE SCIENCE, 2009, 603 (16) : 2574 - 2579
  • [30] Equilibrium relationships of Fe3O4, Fe2O3, and oxygen.
    Greig, JW
    Posnjak, E
    Merwin, HE
    Sosman, RB
    AMERICAN JOURNAL OF SCIENCE, 1935, 30 (177) : 239 - 316