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46. Fan J, Lei J, Yu C (2007) Hard-templating synthesis of a novel rod-like nanoporous calcium
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3):489–493
47. Wang M, Guo L, Sun H (2019) Manufacture of biomaterials. In: Encyclopedia of biomedical
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52. Drevet R, Zhuova Y, Dubinskiy S et al (2019) Electrodeposition of cobalt-substituted calcium
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153
44. Cao G, Liu D (2008) Template-based synthesis of nanorod, nanowire, and nanotube arrays.
In: Springer handbook of nanotechnology, Springer, New York. 136(1–2):45–64
45. Regi MV (2010) Evolution of bioceramics within the field of biomaterials. C R Chim 13(1–
2):174–185
46. Fan J, Lei J, Yu C (2007) Hard-templating synthesis of a novel rod-like nanoporous calcium
phosphate bioceramics and their capacity as antibiotic carriers. Mater Chem Phy 103(2–
3):489–493
47. Wang M, Guo L, Sun H (2019) Manufacture of biomaterials. In: Encyclopedia of biomedical
engineering, Elsevier Publications, London
48. Shin K, Acri T, Geary S et al (2017) Biomimetic mineralization of biomaterials using simulated
body fluids for bone tissue engineering and regenerative medicine. Tissue Eng Part A 23(19–
20):1169–1180
49. Stefanic M, Krnel K, Pribosic I et al (2012) Rapid biomimetic deposition of octacalcium
phosphate coatings on zirconia ceramics (Y-TZP) for dental implant applications. Appl Surf
Sci 258(10):4649–4656
50. Bigi A, Boanini E, Bracci B et al (2005) Nanocrystalline hydroxyapatite coatings on titanium:
a new fast biomimetic method. Biomater 26:4085–4089
51. Fathyunes L, Khalil-Allafi J, Moosavifar M (2019) Development of graphene oxide/calcium
phosphate coating by pulse electrodeposition on anodized titanium: Biocorrosion and
mechanical behavior. J Mech Behav Biomed Mater 90:575–586
52. Drevet R, Zhuova Y, Dubinskiy S et al (2019) Electrodeposition of cobalt-substituted calcium
phosphate coatings on Ti-22Nb-6Zr alloy for bone implant applications. J Alloys Compd
793:576–582
53. Poorraeisi M, Afshar A (2018) The study of electrodeposition of hydroxyapatite-ZrO 2 -TiO 2
nanocomposite coatings on 316 stainless steel. Surf Coat Technol 339:199–207
54. Pontoni D, Narayanan T, Rennie AR (2002) Tr-saxs study of nucleation and growth of sillica
colloids. Langmuir 18:56–59
55. Ebnesajid S (2014) Chapter 4—Surface and material characterization techniques. In: Surface
treatment of materials for adhesive bonding. William Andrew Applied Science Publishers,
New York
56. Ismail AF, Khulbe KC, Matsuura T (2019) Chapter 3—RO membrane characterization. In:
Reverse osmosis. Elsevier Publications, London
57. Bergstrom J (2015) 2—Experimental characterization techniques, mechanics of solid polymers. In: Theory and computational modeling. William Andrew Applied Science Publishers,
New York
58. Ratner BD (2013) Chapter I.1.5—Surface Properties and Surface Characterization of Biomaterials. In: Biomaterials science (Third Edition), an introduction to materials in medicine.
Academic Press, Cambridge, England.
59. Ven ALVD, Mack A, Dunner Jr K et al (2012) Chapter one—preparation, characterization,
and cellular associations of silicon logic-embedded vectors. In: Methods in enzymology, vol.
508. Elsevier Publications, London
60. Bajpai OP, Panja S, Chattopadhyay S et al (2015) Process-structure-property relationships
in nanocomposites based on piezoelectric-polymer matrix and magnetic nanoparticles. In:
Manufacturing of nanocomposites with engineering plastic. Elsevier Publications, London
61. Cuenat A, Leah R (2014) Chapter 7—Scanning probe and particle beam microscopy.
In: Fundamental principles of engineering nanometrology (2nd edn), micro and nano
technologies. William Andrew Applied Science Publishers, New York
62. Ramakrishna BL, Ong EW (2001) Surface evaluation by atomic force microscopy. In:
Encyclopedia of materials: science and technology (2nd edn), Elsevier Publications, London
63. Shi D, Guo Z, Bedford N (2015) 2-Characterization and Analysis of Nanomaterials. In:
Nanomaterials and Devices, Micro and Nano Technologies. William Andrew Applied Science
Publishers, New York
64. Causserand C, Aimar P (2010) 1.15—Characterization of filtration membranes. In: Comprehensive membrane science and engineering, vol. 1. Elsevier Publications, London
