REFERENCES
1. Wang Z, Wang Y, Sun X, et al. Supramolecular core-shell nanoassemblies with tumor microenvironment-triggered size and structure switch for improved photothermal therapy. Small 2022;18:e2200588.
2. Feng Z, Zhang T, Wang H, Xu B. Supramolecular catalysis and dynamic assemblies for medicine. Chem Soc Rev 2017;46:6470-9.
3. Luo R, Xia Y. Fluorescent cadmium sulfide supraparticles: one-step in situ self-assembly fabrication and cationic surfactant chain length-dependent mitochondria targeting capacity. J Anal Test 2021;5:30-9.
4. Zeng Y, Shi J, Li K, et al. Coordination-driven [2+2] metallo-macrocycles isomers: conformational control and photophysical properties. Chem Synth 2022;2:12.
5. Zhou C, Sun X, Han J. Chiral conducting polymer nanomaterials: synthesis and applications in enantioselective recognition. Mater Chem Front 2020;4:2499-516.
6. Moreno-Alcántar G, Aliprandi A, Rouquette R, et al. Solvent-driven supramolecular wrapping of self-assembled structures. Angew Chem Int Ed Engl 2021;60:5407-13.
7. Qin Y, Wang YT, Yang HB, Zhu W. Recent advances on the construction of diarylethene-based supramolecular metallacycles and metallacages via coordination-driven self-assembly. Chem Synth 2021;1:2.
8. Kim Y, Lee M. Supramolecular capsules from bilayer membrane scission driven by corannulene. Chem Eur J 2015;21:5736-40.
9. Sun HL, Chen Y, Zhao J, Liu Y. Photocontrolled reversible conversion of nanotube and nanoparticle mediated by β-cyclodextrin dimers. Angew Chem Int Ed Engl 2015;54:9376-80.
10. Chen X, Liu L, Huo M, et al. Direct synthesis of polymer nanotubes by aqueous dispersion polymerization of a cyclodextrin/styrene complex. Angew Chem 2017;129:16768-72.
11. Zhou C, Ren Y, Han J, et al. Controllable supramolecular chiral twisted nanoribbons from achiral conjugated oligoaniline derivatives. J Am Chem Soc 2018;140:9417-25.