12
1 Rubbery Materials and Soft Nanocomposites
18. Y. Sakaki, R. Usami, A. Tohsan, P. Junkong, Y. Ikeda, RSC. Adv. 8, 10727 (2018)
19. A. Tohsan, Y. Yasuda, R. Usami, T. Ohashi, Y. Sakaki, P. Junkong, Y. Ikeda, Kautsch. Gummi
Kunstst (June), 111 (2018)
20. T. Ohashi, T. Sato, T. Nakajima, P. Junkong, Y. Ikeda, RSC. Adv. 8, 32930 (2018)
21. Y. Ikeda, Y. Sakaki, Y. Yasuda, P. Junkong, T. Ohashi, K. Miyaji, H. Kobayashi, Organometallics
38, 2363 (2019)
22. A. Kelly (ed.), Concise Encyclopedia of Composite Materials, Revised (Pergamon, London,
1994)
23. F. Li, J. Liu, H. Yang, Y. Lu, L. Zhang, Polymer 101, 199 (2016) [Heat build-up is an industrially
important subject. Not many studies have been published. This one is of value as a disclosed
modern approach]
24. S.-J. Park, M.-K. Seo, in Polymer Composites, Chap. 5, vol 1, ed. by S. Thomas, K. Joseph,
S.K. Malhotra, K. Goda, M.S. Sreekala (Wiley-VCH, Weinheim, 2011)
25. A. Das, G. Heinrich, Graphene-Rubber Nanocomposites, in Encyclopedia of Polymeric
Nanomaterials (Springer, Berlin, 2014)
26. V. Mittal, Macromol. Mater. Eng. 299, 906–931 (2014)
27. G.S. Whitby, C.C. Davis, R.F. Dunbrook (eds.), Synthetic Rubber (Wiley, New York, 1954)
[Authoritative book on synthetic rubbers published at an early stage of their commercialization]
28. U. Schubert (ed.), Silicon Chemistry (Springer, Heidelberg, 2012)
29. E.P. Plueddemann, Silane Coupling Agents, 2nd edn. (Plenum Press, New York, 1982)
30. M.P. Wagner, Rubber World 164, 46 (1971)
31. S. Wolff, Kautsch. Gummi Kunstst. 30, 516 (1977)
32. A.S. Hashim, B. Azahari, Y. Ikeda, S. Kohjiya, Rubber Chem. Technol. 71, 289 (1998)
33. S. Kohjiya, Y. Ikeda, Rubber Chem. Technol. 73, 534 (2000)
34. W. Meon, A. Blume, H.-D. Lunginsland, S. Uhrlandt, Rubber Compounding: Chemistry and
Applications, Chap. 7, ed. by B. Rodgers (Marcel Dekker, New York, 2004)
35. L.R.G. Treloar, The Physics of Rubber Elasticity, 3rd edn. (Clarendon Press, Oxford, 1975)
36. B. Erman, J.E. Mark, Structures and Properties of Rubberlike Networks (Oxford University
Press, New York, 1997)
37. W.W. Graessley, Polymeric Liquids and Networks: Dynamics and Rheology (Garland Science,
London, 2008)
38. C.M. Roland, Viscoelastic Behavior of Rubbery Materials (Oxford University Press, Oxford,
2011)
39. S. Kohjiya, in Nanotechnology and Soft Matters, ed. by Rubber Forum (Posty Co., Tokyo,
2005), pp. 1–7 (in Japanese)
40. Y. Dong, R. Umer, A.K. Tak Lau, Fillers and Reinforcements for Advanced Nanocomposites
(Woodhead/Elsevier, Cambridge, 2015)
41. K.E. Drexler, Proc. Natl. Acad. Sci. USA 78, 5275 (1981)
42. D. Mulhall, Our Molecular Future: How Nanotechnology, Robotics, Genetics, and Artificial
Intelligence Will Transform Our World (Prometheus Books, New York, 2002)
43. K.E. Drexle, Bull. Sci. Tech. Soc. 24(1) 21 (2004)
44. R.E. Smalley, Of chemistry, love and nanorobots-how soon will we see the nanometer-scale
robots envisaged by K. Evic Drexler and other molecular nanotechnologies? The simple answer
is never. Sci. Am. (September), 68 (2001)
45. K. Kulinowski, Nanotechnology from “wow” to “yuck”? Bull. Sci. Tech. Soc. 24(1) 13 (2004)
46. M. Pelow, Nature 525, 18 (3 September 2015)
47. R. Van Noorden, D. Castelvecchi, Nature 538, 152 (13 October 2016)
48. V.A. Garten, K. Eppinger, D.E. Weiss, Rubber Chem. Technol. 29, 295 (1957)
49. Y. Nakajima, Advanced Tire Mechanics (Springer, Singapore, 2019)
1 Rubbery Materials and Soft Nanocomposites
18. Y. Sakaki, R. Usami, A. Tohsan, P. Junkong, Y. Ikeda, RSC. Adv. 8, 10727 (2018)
19. A. Tohsan, Y. Yasuda, R. Usami, T. Ohashi, Y. Sakaki, P. Junkong, Y. Ikeda, Kautsch. Gummi
Kunstst (June), 111 (2018)
20. T. Ohashi, T. Sato, T. Nakajima, P. Junkong, Y. Ikeda, RSC. Adv. 8, 32930 (2018)
21. Y. Ikeda, Y. Sakaki, Y. Yasuda, P. Junkong, T. Ohashi, K. Miyaji, H. Kobayashi, Organometallics
38, 2363 (2019)
22. A. Kelly (ed.), Concise Encyclopedia of Composite Materials, Revised (Pergamon, London,
1994)
23. F. Li, J. Liu, H. Yang, Y. Lu, L. Zhang, Polymer 101, 199 (2016) [Heat build-up is an industrially
important subject. Not many studies have been published. This one is of value as a disclosed
modern approach]
24. S.-J. Park, M.-K. Seo, in Polymer Composites, Chap. 5, vol 1, ed. by S. Thomas, K. Joseph,
S.K. Malhotra, K. Goda, M.S. Sreekala (Wiley-VCH, Weinheim, 2011)
25. A. Das, G. Heinrich, Graphene-Rubber Nanocomposites, in Encyclopedia of Polymeric
Nanomaterials (Springer, Berlin, 2014)
26. V. Mittal, Macromol. Mater. Eng. 299, 906–931 (2014)
27. G.S. Whitby, C.C. Davis, R.F. Dunbrook (eds.), Synthetic Rubber (Wiley, New York, 1954)
[Authoritative book on synthetic rubbers published at an early stage of their commercialization]
28. U. Schubert (ed.), Silicon Chemistry (Springer, Heidelberg, 2012)
29. E.P. Plueddemann, Silane Coupling Agents, 2nd edn. (Plenum Press, New York, 1982)
30. M.P. Wagner, Rubber World 164, 46 (1971)
31. S. Wolff, Kautsch. Gummi Kunstst. 30, 516 (1977)
32. A.S. Hashim, B. Azahari, Y. Ikeda, S. Kohjiya, Rubber Chem. Technol. 71, 289 (1998)
33. S. Kohjiya, Y. Ikeda, Rubber Chem. Technol. 73, 534 (2000)
34. W. Meon, A. Blume, H.-D. Lunginsland, S. Uhrlandt, Rubber Compounding: Chemistry and
Applications, Chap. 7, ed. by B. Rodgers (Marcel Dekker, New York, 2004)
35. L.R.G. Treloar, The Physics of Rubber Elasticity, 3rd edn. (Clarendon Press, Oxford, 1975)
36. B. Erman, J.E. Mark, Structures and Properties of Rubberlike Networks (Oxford University
Press, New York, 1997)
37. W.W. Graessley, Polymeric Liquids and Networks: Dynamics and Rheology (Garland Science,
London, 2008)
38. C.M. Roland, Viscoelastic Behavior of Rubbery Materials (Oxford University Press, Oxford,
2011)
39. S. Kohjiya, in Nanotechnology and Soft Matters, ed. by Rubber Forum (Posty Co., Tokyo,
2005), pp. 1–7 (in Japanese)
40. Y. Dong, R. Umer, A.K. Tak Lau, Fillers and Reinforcements for Advanced Nanocomposites
(Woodhead/Elsevier, Cambridge, 2015)
41. K.E. Drexler, Proc. Natl. Acad. Sci. USA 78, 5275 (1981)
42. D. Mulhall, Our Molecular Future: How Nanotechnology, Robotics, Genetics, and Artificial
Intelligence Will Transform Our World (Prometheus Books, New York, 2002)
43. K.E. Drexle, Bull. Sci. Tech. Soc. 24(1) 21 (2004)
44. R.E. Smalley, Of chemistry, love and nanorobots-how soon will we see the nanometer-scale
robots envisaged by K. Evic Drexler and other molecular nanotechnologies? The simple answer
is never. Sci. Am. (September), 68 (2001)
45. K. Kulinowski, Nanotechnology from “wow” to “yuck”? Bull. Sci. Tech. Soc. 24(1) 13 (2004)
46. M. Pelow, Nature 525, 18 (3 September 2015)
47. R. Van Noorden, D. Castelvecchi, Nature 538, 152 (13 October 2016)
48. V.A. Garten, K. Eppinger, D.E. Weiss, Rubber Chem. Technol. 29, 295 (1957)
49. Y. Nakajima, Advanced Tire Mechanics (Springer, Singapore, 2019)
