[1] G. Fleming and M. Ratner, Grand challenges in basic energy
sciences, Physics Today 61(7) (2008), 28.
[2] U. S. N. N. Initiative, Nanotechnology 101, [Online], [Accessed 21
April 2017].
Available: http://www.nano.gov/nanotech-101/special
[3] P.-Y. Chen, J. McKittrick and M. Meyers, Biological materials:
Functional adaptations and bioinspired designs, Progress in Materials
Science 57(8) (2012), 1492-1704.
[4] S. Weiner and L. Addadi, At the cutting edge, Science 298(5592)
(2002), 375-376.
[5] N. Kröger and E. Brunner, Complex-shaped microbial biominerals
for nanotechnology, WIREs Nanomedicine and Nanobiotechnology 6(6)
(2014), 615-627.
[6] C. Hamm, R. Merkel, O. Springer, P. Jurkojc, C. Maier, K. Prechtel
and V. Smetacek, Architecture and material properties of diatom shells
provide effective mechanical protection, Nature 421 (2003),
841-843.
[7] F. Round, R. Crawford and D. Mann, The Diatoms, Biology &
Morphology of the Genera, Cambridge: Cambridge University Press,
1990.
[8] D. Mann and S. Droop, Biodiversity, biogeography and conservation
of diatoms, Hydrobiologia 336(1-3) (1996), 19-32.
[9] R. Gordon, D. Losic, M. Tiffany, S. Nagy and F. Sterrenburg, The
glass menagerie: Diatoms for novel applications in nanotechnology,
Trends in Biotechnology 27(2) (2009), 116-127.
[10] T. Fuhrmann, S. Landwehr, M. El Rharbi-Kucki and M. Sumper,
Diatoms as living photonic crystals, Applied Physics B Lasers and
Optics 78(3-4) (2004), 257-260.
[11] D. Losic, G. Rosengarten, J. G. Mitchell and N. H. Voelcker, Pore
architecture of diatom frustules: Potential nanostructured membranes
for molecular and particle separations, Journal of Nanoscience and
Nanotechnology 6(4) (2006), 1-8.
[12] M. Bariana, M. Sinn Aw and D. Losic, Tailoring morphological and
interfacial properties of diatom silica microparticles for drug
delivery applications, Advanced Powder Technology 24(4) (2013),
757-763.
[13] H. Aldersey-Williams, Towards biomimetic architecture, Nature
Materials 3(5) (2004), 277-279.
[14] F. Sterrenburg, Crystal palaces - diatoms for engineers, Journal
of Nanoscience and Nanotechnology 5(1) (2005), 100-107.
[15] L. Willis, K. Page, D. Broomhead and E. Cox, Discrete
free-boundary reaction-diffusion model of diatom pore occlusions,
Plant Ecology and Evolution 143(3) (2010), 297-306.
[16] L. Medlin, The use of the terms centric and pennate [+erratum:
25(2), 461], Diatom Research 24(2) (2009), 499-501.
[17] C. Hamm, The evolution of advanced mechanical defenses and
potential technological applications of diatom shells, Journal of
Nanoscience and Nanotechnology 5(1) (2005), 108-119.
[18] N. Almqvist, Y. Delamo, B. L. Smith, N. H. Thomson, Ã….
Bartholdson, R. Lal, M. Brzezinski and P. Hansma, Micromechanical and
structural properties of a pennate diatom investigated by atomic force
microscopy, Journal of Microscopy 202(3) (2001), 518-532.
[19] G. Subhash, S. Yao, B. Bellinger and M. Gretz, Investigation of
mechanical properties of diatom frustules using nanoindentation,
Journal of Nanoscience and Nanotechnology 5(1) (2005), 50-56.
[20] D. Losic, K. Short, J. Mitchell, R. Lal and N. Voelcker, AFM
nanoindentations of diatom biosilica surfaces, Langmuir 23(9) (2007),
5014-5021.
[21] M. Buehler and H. Gao, Atomistic studies of flaw tolerant
nanoscale structural links in biological materials, Nanomechanics of
Materials and Structures, Netherlands: Springer (2006), 139-150.
[22] S. Keten, Z. Xu, B. Ihle and M. Buehler, Nanoconfinement controls
stiffness, strength and mechanical toughness of beta-sheet crystals in
silk, Nature Materials 9(4) (2010), 359-367.
[23] A. GarcÃa, D. Sen and M. Buehler, Hierarchical silica
nanostructures inspired by diatom algae yield superior deformability,
toughness, and strength, Metallurgical and Materials Transactions A
42(13) (2011), 3889-3897.
[24] J. Lu, C. Sun and J. Wang, Mechanical simulation of a diatom
frustule structure, Journal of Bionic Engineering 12(1) (2015),
98-108.
[25] M. Diaz, K. Ma, J. Schoenung and L. Dávila, An integrated
approach for probing the structure and mechanical properties of
diatoms: Toward engineered nanotemplates, Acta Biomaterialia 25
(2015), 313-324.
[26] M. A. Tiffany, S. Nagy, N. Rattanawangcharoen and R. Gordon, The
buckling of diatom valves, in North American Diatom Symposium (NADS),
Milford, 2009.
[27] R. Gordon and M. A. Tiffany, Possible buckling phenomena in
diatom morphogenesis, in The Diatom World, Springer (2011),
245-271.
[28] R. Gordon and R. W. Drum, The chemical basis of diatom
morphogenesis, International Review of Cytology 150(421-22) (1994),
243-372.
[29] E. Brunner, C. Gröger, K. Lutz, P. Richthammer, K. Spinde, and
M. Sumper, Analytical studies of silica biomineralization: Towards an
understanding of silica processing by diatoms, Applied Microbiology
and Biotechnology 84(4) (2009), 607-616.
[30] E. Madenci and I. Guven, The Finite Element Method and
Applications in Engineering using ANSYS, New York: Springer, 2006.
[31] L. Friedrichs, A simple cleaning and fluorescent staining
protocol for recent and fossil diatom frustules, Diatom Research 28(3)
(2013), 317-327.
[32] E. Paasche, Silicon content of five marine plankton diatom
species measured with a rapid filter method, Limnology and
Oceanography 25(3) (1980), 474-480.
[33] O. Zienkiewicz, R. L. Taylor and J. Z. Zhu, The Finite Element
Method its Basis and Fundamentals, London: Butterworth-Heinemann,
2005.
[34] B. Tesson and M. Hildebrand, Extensive and intimate association
of the cytoskeleton with forming silica in diatoms: Control over
patterning on the meso- and micro-scale, PLoS One 5(12) (2010),
1-13.
[35] A. Nettles, Basic mechanics of laminated composite plates,
Marshall Space Flight Center, AL: National Aeronautics and Space
Administration (NASA), 1994.
[36] A. Leissa, Vibrations of Plates, Washington D.C.: National
Aeronautics and Space Administration, 1969.
[37] T. Galambos and A. Surovek, Structural Stability of Steel:
Concepts and Applications for Structural Engineers, Hoboken: Wiley,
2008.
[38] D. Raup, Geometric analysis of shell couling: General problems,
Journal of Paleontology 40(5) (1966), 1178-1190.
[39] M. M. Ghobara, N. Mazunder, V. Vinayak, I. C. Gebeshuber, M. A.
Tiffany, B. Schoefs and R. Gordon, On light and diatoms: A photonics
and photobiology review, In: Diatoms: Fundamentals and Applications
(Submitted, 2017).
[40] R. Wagner, J. Jungck and D. V. Loo, Sub-micrometer X-ray
tomography of radiolarians: Computer modeling and skeletonization,
Microscopy Today 23(5) (2015), 18-23.