order to obtain a complete separation in terms of both CCD and MMD. This
technique enables the generation of 2D characterization data for virtually any
polyolefin over a wide compositional range regardless of crystallinity [46–49].
References
1. Kaminsky W (2008) Macromol Chem Phys 209:459
2. Kaminsky W, Arndt M (1997) Polymer synthesis/polymer catalysis. Springer, Berlin, p 143
3. Seymour RB, Cheng T (eds) (1986) History of polyolefins. D. Reidel, Dordrecht, Holland
4. Scheirs J, Kaminsky W (2000) Metallocene-based polyolefins: preparation, properties and
technology. Wiley, Hoboken, NJ
5. Mori S, Barth HG (1999) Size exclusion chromatography. Springer, Berlin
6. Striegel AM, Yau WW, Kirkland JJ, Bly DD (2009) Modern size-exclusion liquid chromatography. Wiley, Hoboken, NJ
7. Monrabal B (2013) Adv Polym Sci 257:203
8. Sinn H, Kaminsky W (1980) Adv Organomet Chem 18:99
9. Kaminsky W (2004) J Polym Sci A Polym Chem 42:3911
10. Janca J (1984) Size exclusion liquid chromatography. Marcel Dekker, New York, NY
11. Yau WW, Kirkland JJ, Bly DD (1979) Modern size exclusion chromatography. Wiley,
New York, NY
12. Tribe K, Saunders G, Meißner R (2006) Macromol Symp 236:228
13. Piel C, Jannesson E, Qvist A (2009) Macromol Symp 282:41
14. Liu MX, Dwyer JL (1996) Appl Spectrosc 50:349
15. Harding GH, van Reenen AJ (2006) Macromol Chem Phys 207:1680
16. Soares JBP, Hamielec AE (1995) Polymer 36:1639
17. Soares JBP, Anatawarskul S, Adams PMW (2005) Adv Polym Sci 182:1
18. Kissin YV, Fruitwala HA (2007) J Appl Polym Sci 106:3872
19. Pasch H, Bru ¨ll R, Wahner U, Monrabal B (2000) Macromol Mater Eng 279:46
20. Monrabal B, Sancho-Tello J, Mayo N, Romero L (2007) Macromol Symp 257:71
21. van Reenen AJ, Brand M, Rohwer E, Walters P (2009) Macromol Symp 282:25
22. Alghyamah AA, Soares JBP (2009) Macromol Symp 285:8
23. Wang W, Kharchenko S, Migler K, Zhu S (2004) Polymer 45:6495
24. Yau WW, Gillespie D (2001) Polymer 42:8947
25. Gabriel C, Lilge D (2001) Polymer 42:297
26. Starck P, Lehmus P, Seppa ¨la ¨ JV (1990) Polym Eng Sci 39:1444
27. Hiller W, Pasch H, Macko T, Hofmann M, Ganz J, Spraul M, Braumann U, Streck R, Mason J,
van Damme F (2006) J Magn Reson 183:290
28. de Goede E, Mallon P, Pasch H (2010) Macromol Mater Eng 295:366
29. Albrecht A, Heinz LC, Lilge D, Pasch H (2007) Macromol Symp 257:46
30. Macko T, Bru ¨ll R, Zhu Y, Wang Y (2010) J Sep Sci 33:3446
31. Mathot VBF (1994) The crystallization and melting region. In: Mathot VBF (ed) Calorimetry
and thermal analysis of polymers. Hanser Publishers, Munich, Chapter 9
32. Krumme A, Basiura M, Pijpers T, Poel GV, Heinz LC, Bru ¨ll R, Mathot VBF (2011) Mater Sci
Eng 17:260
33. Poel GV, Mathot VBF (2007) Thermochim Acta 461:107
34. Pasch H, Trathnigg B (2013) Multidimensional HPLC of polymers. Springer, Berlin
35. Heinz LC, Pasch H (2005) Polymer 46:12040
36. Macko T, Pasch H, Bru ¨ll R (2006) J Chromatogr A 1115:81
37. Macko T, Denayer JF, Pasch H, Baron GV (2003) J Sep Sci 26:1569
38. Macko T, Pasch H (2009) Macromolecules 42:6063
39. Pereira LJ (2008) J Liq Chromatogr Rel Tech 31:1687
8
1 Introduction
technique enables the generation of 2D characterization data for virtually any
polyolefin over a wide compositional range regardless of crystallinity [46–49].
References
1. Kaminsky W (2008) Macromol Chem Phys 209:459
2. Kaminsky W, Arndt M (1997) Polymer synthesis/polymer catalysis. Springer, Berlin, p 143
3. Seymour RB, Cheng T (eds) (1986) History of polyolefins. D. Reidel, Dordrecht, Holland
4. Scheirs J, Kaminsky W (2000) Metallocene-based polyolefins: preparation, properties and
technology. Wiley, Hoboken, NJ
5. Mori S, Barth HG (1999) Size exclusion chromatography. Springer, Berlin
6. Striegel AM, Yau WW, Kirkland JJ, Bly DD (2009) Modern size-exclusion liquid chromatography. Wiley, Hoboken, NJ
7. Monrabal B (2013) Adv Polym Sci 257:203
8. Sinn H, Kaminsky W (1980) Adv Organomet Chem 18:99
9. Kaminsky W (2004) J Polym Sci A Polym Chem 42:3911
10. Janca J (1984) Size exclusion liquid chromatography. Marcel Dekker, New York, NY
11. Yau WW, Kirkland JJ, Bly DD (1979) Modern size exclusion chromatography. Wiley,
New York, NY
12. Tribe K, Saunders G, Meißner R (2006) Macromol Symp 236:228
13. Piel C, Jannesson E, Qvist A (2009) Macromol Symp 282:41
14. Liu MX, Dwyer JL (1996) Appl Spectrosc 50:349
15. Harding GH, van Reenen AJ (2006) Macromol Chem Phys 207:1680
16. Soares JBP, Hamielec AE (1995) Polymer 36:1639
17. Soares JBP, Anatawarskul S, Adams PMW (2005) Adv Polym Sci 182:1
18. Kissin YV, Fruitwala HA (2007) J Appl Polym Sci 106:3872
19. Pasch H, Bru ¨ll R, Wahner U, Monrabal B (2000) Macromol Mater Eng 279:46
20. Monrabal B, Sancho-Tello J, Mayo N, Romero L (2007) Macromol Symp 257:71
21. van Reenen AJ, Brand M, Rohwer E, Walters P (2009) Macromol Symp 282:25
22. Alghyamah AA, Soares JBP (2009) Macromol Symp 285:8
23. Wang W, Kharchenko S, Migler K, Zhu S (2004) Polymer 45:6495
24. Yau WW, Gillespie D (2001) Polymer 42:8947
25. Gabriel C, Lilge D (2001) Polymer 42:297
26. Starck P, Lehmus P, Seppa ¨la ¨ JV (1990) Polym Eng Sci 39:1444
27. Hiller W, Pasch H, Macko T, Hofmann M, Ganz J, Spraul M, Braumann U, Streck R, Mason J,
van Damme F (2006) J Magn Reson 183:290
28. de Goede E, Mallon P, Pasch H (2010) Macromol Mater Eng 295:366
29. Albrecht A, Heinz LC, Lilge D, Pasch H (2007) Macromol Symp 257:46
30. Macko T, Bru ¨ll R, Zhu Y, Wang Y (2010) J Sep Sci 33:3446
31. Mathot VBF (1994) The crystallization and melting region. In: Mathot VBF (ed) Calorimetry
and thermal analysis of polymers. Hanser Publishers, Munich, Chapter 9
32. Krumme A, Basiura M, Pijpers T, Poel GV, Heinz LC, Bru ¨ll R, Mathot VBF (2011) Mater Sci
Eng 17:260
33. Poel GV, Mathot VBF (2007) Thermochim Acta 461:107
34. Pasch H, Trathnigg B (2013) Multidimensional HPLC of polymers. Springer, Berlin
35. Heinz LC, Pasch H (2005) Polymer 46:12040
36. Macko T, Pasch H, Bru ¨ll R (2006) J Chromatogr A 1115:81
37. Macko T, Denayer JF, Pasch H, Baron GV (2003) J Sep Sci 26:1569
38. Macko T, Pasch H (2009) Macromolecules 42:6063
39. Pereira LJ (2008) J Liq Chromatogr Rel Tech 31:1687
8
1 Introduction
