References
1. Rest C, Mayoral MJ, Fucke K, Schellheimer J, Stepanenko V, Fernández G (2014)
Self-assembly and (hydro)gelation triggered by cooperative p–p and unconventional C–
HÁÁÁX hydrogen bonding interactions. Angew Chem Int Ed 53:700–705
2. Rest C, Martin A, Stepanenko V, Allampally NK, Schmidt D, Fernández G (2014) Multiple
CHÁÁÁO interactions involving glycol chains as driving force for the self-assembly of
amphiphilic Pd(II) complexes. Chem Commun 50:13366–13369
3. Hafkamp RJH, Kokke BPA, Danke IM, Geurts HPM, Rowan AE, Feiters MC, Nolte RJM
(1997) Organogel formation and molecular imprinting by functionalized gluconamides and
their metal complexes. Chem Commun 545
4. Dawn A, Andrew KS, Yufit DS, Hong Y, Reddy JP, Jones CD, Aguilar JA, Steed JW (2015)
Supramolecular gel control of cisplatin crystallization: identification of a new solvate form
using a cisplatin-mimetic gelator. Cryst Growth Des 15:4591–4599
5. Liu Z, Feng Y, Zhao Z, Yan Z, He Y, Luo X, Liu C, Fan Q (2014) A new class of dendritic
metallogels with multiple stimuli-responsiveness and as templates for the in situ synthesis of
silver nanoparticles. Chem Eur J 20:533–541
6. Taira T, Suzaki Y, Osakada K (2013) Metallohydrogel formed from amphiphilic Pd complex
and a-cyclodextrin: control of its sol-gel transition. Chem Lett 42:1062–1064
7. Dey S, Datta D, Chakraborty K, Nandi S, Anoop A, Pathak T (2013) A coordination-assisted
general approach to nickel-based nanometallogels. RSC Adv 3:9163–9166
8. Araujo M, Escuder B (2017) Transient catalytic activity of a triazole-based gelator regulated
by molecular gel assembly/disassembly. Chem Select 2:854–862
9. Ghosh K, Panja S, Bhattacharya S (2017) Visual sensing of Ag
+ ions through gelation of
cholesterol-appended benzimidazole and associated ion conducting behaviour. Chem Select
2:959–966
10. Shirakawa M, Fujita N, Tani T, Kaneko K, Shinkai S (2005) Organogel of an 8-quinolinol
platinum(II) chelate derivative and its efficient phosphorescence emission effected by
inhibition of dioxygen quenching. Chem Commun 4149
11. Miao W, Zhang L, Wang X, Cao H, Jin Q, Liu M (2013) A dual-functional metallogel of
amphiphilic Copper(II) quinolinol: redox responsiveness and enantioselectivity. Chem Eur J
19:3029–3036
12. Miao W, Zhang L, Wang X, Qin L, Liu M (2013) Gelation-induced visible supramolecular
chiral recognition by fluorescent metal complexes of quinolinol-glutamide. Langmuir
29:5435–5442
13. Zhang Y, Zhang B, Kuang Y, Gao Y, Shi J, Zhang X, Xu B (2013) A redox responsive,
fluorescent supramolecular metallohydrogel consists of nanofibers with single-molecule
width. J Am Chem Soc 135:5008–5011
14. Mitsumoto K, Cameron JM, Wei R, Nishikawa H, Shiga T, Nihei M, Newton GN, Oshio H
(2017) A multi-redox responsive cyanometalate-based metallogel. Chem Eur J 23:1502–1506
15. Cametti M, Cetina M, Džolić Z (2015) Cu(II)-specific metallogel formation by an
amido-anthraquinone-pyridyloxalamide ligand in DMSO-water. Dalton Trans 44:7223–7229
16. Bühler G, Feiters MC, Nolte RJM, Dötz KH (2003) A metal-carbene carbohydrate amphiphile
as a low-molecular-mass organometallic gelator. Angew Chem Int Ed 42:2494–2497
17. Hsu THT, Naidu JJ, Yang BJ, Jang MY, Lin IJB (2012) Self-assembly of silver(I) and gold
(I) N-heterocyclic carbene complexes in solid state, mesophase, and solution. Inorg Chem
51:98–108
18. Klawonn T, Gansäuer A, Winkler I, Lauterbach T, Franke D, Nolte RJM, Feiters MC,
Börner H, Hentschel J, Dötz KN (2007) A tailored organometallic gelator with enhanced
amphiphilic character and structural diversity of gelation. Chem Commun 1894
19. Gansäuer A, Winkler I, Klawonn T, Nolte RJM, Feiters MC, Börner HG, Hentschel J, Dötz KH
(2009) Novel organometallic gelators with enhanced amphiphilic character: structure-property
correlations, principles for design, and diversity of gelation. Organometallics 28:1377
References
111
1. Rest C, Mayoral MJ, Fucke K, Schellheimer J, Stepanenko V, Fernández G (2014)
Self-assembly and (hydro)gelation triggered by cooperative p–p and unconventional C–
HÁÁÁX hydrogen bonding interactions. Angew Chem Int Ed 53:700–705
2. Rest C, Martin A, Stepanenko V, Allampally NK, Schmidt D, Fernández G (2014) Multiple
CHÁÁÁO interactions involving glycol chains as driving force for the self-assembly of
amphiphilic Pd(II) complexes. Chem Commun 50:13366–13369
3. Hafkamp RJH, Kokke BPA, Danke IM, Geurts HPM, Rowan AE, Feiters MC, Nolte RJM
(1997) Organogel formation and molecular imprinting by functionalized gluconamides and
their metal complexes. Chem Commun 545
4. Dawn A, Andrew KS, Yufit DS, Hong Y, Reddy JP, Jones CD, Aguilar JA, Steed JW (2015)
Supramolecular gel control of cisplatin crystallization: identification of a new solvate form
using a cisplatin-mimetic gelator. Cryst Growth Des 15:4591–4599
5. Liu Z, Feng Y, Zhao Z, Yan Z, He Y, Luo X, Liu C, Fan Q (2014) A new class of dendritic
metallogels with multiple stimuli-responsiveness and as templates for the in situ synthesis of
silver nanoparticles. Chem Eur J 20:533–541
6. Taira T, Suzaki Y, Osakada K (2013) Metallohydrogel formed from amphiphilic Pd complex
and a-cyclodextrin: control of its sol-gel transition. Chem Lett 42:1062–1064
7. Dey S, Datta D, Chakraborty K, Nandi S, Anoop A, Pathak T (2013) A coordination-assisted
general approach to nickel-based nanometallogels. RSC Adv 3:9163–9166
8. Araujo M, Escuder B (2017) Transient catalytic activity of a triazole-based gelator regulated
by molecular gel assembly/disassembly. Chem Select 2:854–862
9. Ghosh K, Panja S, Bhattacharya S (2017) Visual sensing of Ag
+ ions through gelation of
cholesterol-appended benzimidazole and associated ion conducting behaviour. Chem Select
2:959–966
10. Shirakawa M, Fujita N, Tani T, Kaneko K, Shinkai S (2005) Organogel of an 8-quinolinol
platinum(II) chelate derivative and its efficient phosphorescence emission effected by
inhibition of dioxygen quenching. Chem Commun 4149
11. Miao W, Zhang L, Wang X, Cao H, Jin Q, Liu M (2013) A dual-functional metallogel of
amphiphilic Copper(II) quinolinol: redox responsiveness and enantioselectivity. Chem Eur J
19:3029–3036
12. Miao W, Zhang L, Wang X, Qin L, Liu M (2013) Gelation-induced visible supramolecular
chiral recognition by fluorescent metal complexes of quinolinol-glutamide. Langmuir
29:5435–5442
13. Zhang Y, Zhang B, Kuang Y, Gao Y, Shi J, Zhang X, Xu B (2013) A redox responsive,
fluorescent supramolecular metallohydrogel consists of nanofibers with single-molecule
width. J Am Chem Soc 135:5008–5011
14. Mitsumoto K, Cameron JM, Wei R, Nishikawa H, Shiga T, Nihei M, Newton GN, Oshio H
(2017) A multi-redox responsive cyanometalate-based metallogel. Chem Eur J 23:1502–1506
15. Cametti M, Cetina M, Džolić Z (2015) Cu(II)-specific metallogel formation by an
amido-anthraquinone-pyridyloxalamide ligand in DMSO-water. Dalton Trans 44:7223–7229
16. Bühler G, Feiters MC, Nolte RJM, Dötz KH (2003) A metal-carbene carbohydrate amphiphile
as a low-molecular-mass organometallic gelator. Angew Chem Int Ed 42:2494–2497
17. Hsu THT, Naidu JJ, Yang BJ, Jang MY, Lin IJB (2012) Self-assembly of silver(I) and gold
(I) N-heterocyclic carbene complexes in solid state, mesophase, and solution. Inorg Chem
51:98–108
18. Klawonn T, Gansäuer A, Winkler I, Lauterbach T, Franke D, Nolte RJM, Feiters MC,
Börner H, Hentschel J, Dötz KN (2007) A tailored organometallic gelator with enhanced
amphiphilic character and structural diversity of gelation. Chem Commun 1894
19. Gansäuer A, Winkler I, Klawonn T, Nolte RJM, Feiters MC, Börner HG, Hentschel J, Dötz KH
(2009) Novel organometallic gelators with enhanced amphiphilic character: structure-property
correlations, principles for design, and diversity of gelation. Organometallics 28:1377
References
111
