5 Covalent Assemblies of Metal Nanoparticles—Strategies …
195
164. Bao C, Zhu L, Lin Q, Tian H (2015) Building biomedical materials using photochemical bond
cleavage. Adv Mater 27:1647–1662
165. Lai J, Xu Y, Mu X, Wu X, Li C, Zheng J, Wu C, Chen J, Zhao Y (2011) Light-triggered
covalent assembly of gold nanoparticles in aqueous solution. Chem Commun 47:3822–3824
166. Cheng X, Sun R, Yin L, Chai Z, Shi H, Gao M (2017) Light-triggered assembly of gold
nanoparticles for photothermal therapy and photoacoustic imaging of tumors in vivo. Adv
Mater 29:1604894
167. Xia H, Gao Y, Yin L, Cheng X, Wang A, Zhao M, Ding J, Shi H (2019) Light-triggered covalent
coupling of gold nanoparticles for photothermal cancer therapy. ChemBioChem 20:667–671
168. Zhen SJ, Zhang ZY, Li N, Zhang ZD, Wang J, Li CM, Zhan L, Zhuang HL, Huang CZ (2013)
UV light-induced self-assembly of gold nanocrystals into chains and networks in a solution
of silver nitrate. Nanotechnology 24:055601
169. Itoh H, Tahara A, Naka K, Chujo Y (2004) Photochemical assembly of gold nanoparticles
utilizing the photodimerization of thymine. Langmuir 20:1972–1976
170. Zhou J, Beattie DA, Sedev R, Ralston J (2007) Synthesis and surface structure of thyminefunctionalized, self-assembled monolayer-protected gold nanoparticles. Langmuir 23:9170–
9177
171. Zhou J, Sedev R, Beattie D, Ralston J (2008) Light-induced aggregation of colloidal gold
nanoparticles capped by thymine derivatives. Langmuir 24:4506–4511
172. Blum AP, Kammeyer JK, Rush AM, Callmann CE, Hahn ME, Gianneschi NC (2015) Stimuliresponsive nanomaterials for biomedical applications. J Am Chem Soc 137:2140–2154
173. Blanco V, Leigh DA, Marcos V (2015) Artificial switchable catalysts. Chem Soc Rev 44:5341–
5370
174. Vassalini I, Alessandri I (2018) Switchable stimuli-responsive heterogeneous catalysis.
Catalysts 8:569
175. Wei Y, Han S, Kim J, Soh S, Grzybowski BA (2010) Photoswitchable catalysis mediated by
dynamic aggregation of nanoparticles. J Am Chem Soc 132:11018–11020
176. Díaz Díaz D, Kühbeck D, Koopmans RJ (2011) Stimuli-responsive gels as reaction vessels
and reusable catalysts. Chem Soc Rev 40:427–448
177. Zhang J, Zhang M, Tang K, Verpoort F, Sun T (2014) Polymer-based stimuli-responsive
recyclable catalytic systems for organic synthesis. Small 10:32–46
178. Grzelczak M, Liz-Marzan LM, Klajn R (2019) Stimuli-responsive self-assembly of nanoparticles. Chem Soc Rev 48:1342–1361
179. Kay ER (2016) Dynamic covalent nanoparticle building blocks. Chem Eur J 22:10706–10716
180. Rowan SJ, Cantrill SJ, Cousins GRL, Sanders JKM, Stoddart JF (2002) Dynamic covalent
chemistry. Angew Chem Int Ed 41:898–952
181. Borsley S, Kay ER (2016) Dynamic covalent assembly and disassembly of nanoparticle
aggregates. Chem Commun 52:9117–9120
182. Wei W, Wu L, Xu C, Ren J, Qu X (2013) A general approach using spiroborate reversible
cross-linked Au nanoparticles for visual high-throughput screening of chiral vicinal diols.
Chem Sci 4:1156–1162
183. Liu X, Liu H, Zhou W, Zheng H, Yin X, Li Y, Guo Y, Zhu M, Ouyang C, Zhu D, Xia A
(2010) Thermoreversible covalent self-assembly of oligo(p-phenylenevinylene) bridged gold
nanoparticles. Langmuir 26:3179–3185
184. Chan Y-T, Li S, Moorefield CN, Wang P, Shreiner CD, Newkome GR (2010) Selfassembly, disassembly, and reassembly of gold nanorods mediated by bis(terpyridine)–metal
connectivity. Chem Eur J 16:4164–4168
185. Si S, Raula M, Paira TK, Mandal TK (2008) Reversible self-assembly of carboxylated peptidefunctionalized gold nanoparticles driven by metal-ion coordination. ChemPhysChem 9:1578–
1584
186. Rao A, Roy S, Unnikrishnan M, Bhosale SS, Devatha G, Pillai PP (2016) Regulation of
interparticle forces reveals controlled aggregation in charged nanoparticles. Chem Mater
28:2348–2355
195
164. Bao C, Zhu L, Lin Q, Tian H (2015) Building biomedical materials using photochemical bond
cleavage. Adv Mater 27:1647–1662
165. Lai J, Xu Y, Mu X, Wu X, Li C, Zheng J, Wu C, Chen J, Zhao Y (2011) Light-triggered
covalent assembly of gold nanoparticles in aqueous solution. Chem Commun 47:3822–3824
166. Cheng X, Sun R, Yin L, Chai Z, Shi H, Gao M (2017) Light-triggered assembly of gold
nanoparticles for photothermal therapy and photoacoustic imaging of tumors in vivo. Adv
Mater 29:1604894
167. Xia H, Gao Y, Yin L, Cheng X, Wang A, Zhao M, Ding J, Shi H (2019) Light-triggered covalent
coupling of gold nanoparticles for photothermal cancer therapy. ChemBioChem 20:667–671
168. Zhen SJ, Zhang ZY, Li N, Zhang ZD, Wang J, Li CM, Zhan L, Zhuang HL, Huang CZ (2013)
UV light-induced self-assembly of gold nanocrystals into chains and networks in a solution
of silver nitrate. Nanotechnology 24:055601
169. Itoh H, Tahara A, Naka K, Chujo Y (2004) Photochemical assembly of gold nanoparticles
utilizing the photodimerization of thymine. Langmuir 20:1972–1976
170. Zhou J, Beattie DA, Sedev R, Ralston J (2007) Synthesis and surface structure of thyminefunctionalized, self-assembled monolayer-protected gold nanoparticles. Langmuir 23:9170–
9177
171. Zhou J, Sedev R, Beattie D, Ralston J (2008) Light-induced aggregation of colloidal gold
nanoparticles capped by thymine derivatives. Langmuir 24:4506–4511
172. Blum AP, Kammeyer JK, Rush AM, Callmann CE, Hahn ME, Gianneschi NC (2015) Stimuliresponsive nanomaterials for biomedical applications. J Am Chem Soc 137:2140–2154
173. Blanco V, Leigh DA, Marcos V (2015) Artificial switchable catalysts. Chem Soc Rev 44:5341–
5370
174. Vassalini I, Alessandri I (2018) Switchable stimuli-responsive heterogeneous catalysis.
Catalysts 8:569
175. Wei Y, Han S, Kim J, Soh S, Grzybowski BA (2010) Photoswitchable catalysis mediated by
dynamic aggregation of nanoparticles. J Am Chem Soc 132:11018–11020
176. Díaz Díaz D, Kühbeck D, Koopmans RJ (2011) Stimuli-responsive gels as reaction vessels
and reusable catalysts. Chem Soc Rev 40:427–448
177. Zhang J, Zhang M, Tang K, Verpoort F, Sun T (2014) Polymer-based stimuli-responsive
recyclable catalytic systems for organic synthesis. Small 10:32–46
178. Grzelczak M, Liz-Marzan LM, Klajn R (2019) Stimuli-responsive self-assembly of nanoparticles. Chem Soc Rev 48:1342–1361
179. Kay ER (2016) Dynamic covalent nanoparticle building blocks. Chem Eur J 22:10706–10716
180. Rowan SJ, Cantrill SJ, Cousins GRL, Sanders JKM, Stoddart JF (2002) Dynamic covalent
chemistry. Angew Chem Int Ed 41:898–952
181. Borsley S, Kay ER (2016) Dynamic covalent assembly and disassembly of nanoparticle
aggregates. Chem Commun 52:9117–9120
182. Wei W, Wu L, Xu C, Ren J, Qu X (2013) A general approach using spiroborate reversible
cross-linked Au nanoparticles for visual high-throughput screening of chiral vicinal diols.
Chem Sci 4:1156–1162
183. Liu X, Liu H, Zhou W, Zheng H, Yin X, Li Y, Guo Y, Zhu M, Ouyang C, Zhu D, Xia A
(2010) Thermoreversible covalent self-assembly of oligo(p-phenylenevinylene) bridged gold
nanoparticles. Langmuir 26:3179–3185
184. Chan Y-T, Li S, Moorefield CN, Wang P, Shreiner CD, Newkome GR (2010) Selfassembly, disassembly, and reassembly of gold nanorods mediated by bis(terpyridine)–metal
connectivity. Chem Eur J 16:4164–4168
185. Si S, Raula M, Paira TK, Mandal TK (2008) Reversible self-assembly of carboxylated peptidefunctionalized gold nanoparticles driven by metal-ion coordination. ChemPhysChem 9:1578–
1584
186. Rao A, Roy S, Unnikrishnan M, Bhosale SS, Devatha G, Pillai PP (2016) Regulation of
interparticle forces reveals controlled aggregation in charged nanoparticles. Chem Mater
28:2348–2355
