REFERENCES
1. Schwarzenbach RP, Escher BI, Fenner K, et al. The challenge of micropollutants in aquatic systems. Science 2006;313:1072-7.
2. Mohandoss S, Ganesan S, Palanisamy S, et al. Nitrogen, sulfur, and phosphorus Co-doped carbon dots-based ratiometric chemosensor for highly selective sequential detection of Al3+ and Fe3+ ions in logic gate, cell imaging, and real sample analysis. Chemosphere 2023;313:137444.
3. Mohandoss S, Palanisamy S, You S, Shim JJ, Lee YR. Rapid detection of silver ions based on luminescent carbon nanodots for multicolor patterning, smartphone sensors, and bioimaging applications. Anal Methods 2021;13:5719-26.
4. Sonaimuthu M, Ganesan S, Anand S, et al. Multiple heteroatom dopant carbon dots as a novel photoluminescent probe for the sensitive detection of Cu2+ and Fe3+ ions in living cells and environmental sample analysis. Environ Res 2023;219:115106.
5. Li X, Bian C, Meng X, Xiao F. Design and synthesis of an efficient nanoporous adsorbent for Hg2+ and Pb2+ ions in water. J Mater Chem A 2016;4:5999-6005.
6. Mao X, Wang L, Wang C, Lichtfouse E. Glutathione-functionalized melamine sponge, a mimic of a natural antidote, as a quick responsive adsorbent for efficient removal of Hg(II) from aqueous solutions. Environ Chem Lett 2018;16:1429-34.
7. Tajeu GS, Booth JN 3rd, Colantonio LD, et al. Incident cardiovascular disease among adults with blood pressure <140/90 mm Hg. Circulation 2017;136:798-812.
8. Wu P, Dou J, Xu Y, et al. Impact of engineering renovation on dynamic health risk assessment of mercury in a thermometer enterprise. Front Public Health 2022;10:1037915.
9. Recknagel S, Radant H, Kohlmeyer R. Survey of mercury, cadmium and lead content of household batteries. Waste Manag 2014;34:156-61.
10. Mielke HW, Gonzales C. Mercury (Hg) and lead (Pb) in interior and exterior New Orleans house paint films. Chemosphere 2008;72:882-5.
11. Ariya PA, Amyot M, Dastoor A, et al. Mercury physicochemical and biogeochemical transformation in the atmosphere and at atmospheric interfaces: a review and future directions. Chem Rev 2015;115:3760-802.
12. Awual MR, Hasan MM, Eldesoky GE, Khaleque MA, Rahman MM, Naushad M. Facile mercury detection and removal from aqueous media involving ligand impregnated conjugate nanomaterials. Chem Eng J 2016;290:243-51.
13. Chen GH, Chen WY, Yen YC, Wang CW, Chang HT, Chen CF. Detection of mercury(II) ions using colorimetric gold nanoparticles on paper-based analytical devices. Anal Chem 2014;86:6843-9.
14. Chen G, Guo Z, Zeng G, Tang L. Fluorescent and colorimetric sensors for environmental mercury detection. Analyst 2015;140:5400-43.
15. Ding Q, Li C, Wang H, Xu C, Kuang H. Electrochemical detection of heavy metal ions in water. Chem Commun 2021;57:7215-31.
16. Guo Y, Wang Z, Shao H, Jiang X. Hydrothermal synthesis of highly fluorescent carbon nanoparticles from sodium citrate and their use for the detection of mercury ions. Carbon 2013;52:583-9.
17. Gupta VK, Sethi B, Sharma R, Agarwal S, Bharti A. Mercury selective potentiometric sensor based on low rim functionalized thiacalix [4]-arene as a cationic receptor. J Mol Liq 2013;177:114-8.
18. Lin ZH, Zhu G, Zhou YS, et al. A self-powered triboelectric nanosensor for mercury ion detection. Angew Chem Int Ed Engl 2013;52:5065-9.
19. Shi Y, Li W, Feng X, et al. Sensing of mercury ions in porphyra by Copper @ gold nanoclusters based ratiometric fluorescent aptasensor. Food Chem 2021;344:128694.
20. Wang L, Peng X, Fu H, Huang C, Li Y, Liu Z. Recent advances in the development of electrochemical aptasensors for detection of heavy metals in food. Biosens Bioelectron 2020;147:111777.
21. Wang Y, Zhang L, Han X, Zhang L, Wang X, Chen L. Fluorescent probe for mercury ion imaging analysis: strategies and applications. Chem Eng J 2021;406:127166.
22. Du J, Jiang L, Shao Q, et al. Colorimetric detection of mercury ions based on plasmonic nanoparticles. Small 2013;9:1467-81.
23. Ali S, Chen X, Ahmad S, et al. Morphology-controllable bimetallic gold nanostructures for mercury detection: recent developments, challenges and prospects. Arab J Chem 2023;16:104997.
24. Bansod B, Kumar T, Thakur R, Rana S, Singh I. A review on various electrochemical techniques for heavy metal ions detection with different sensing platforms. Biosens Bioelectron 2017;94:443-55.
25. Hasan A, Nanakali NMQ, Salihi A, et al. Nanozyme-based sensing platforms for detection of toxic mercury ions: an alternative approach to conventional methods. Talanta 2020;215:120939.
26. Pierce CE, Furman OS, Nicholas SL, et al. Role of ester sulfate and organic disulfide in mercury methylation in peatland soils. Environ Sci Technol 2022;56:1433-44.
27. Miao J, Feng S, Dou S, et al. Association between mercury exposure and lung function in young adults: A prospective cohort study in Shandong, China. Sci Total Environ 2023;878:162759.
28. Yang Y, Tan Q, Lin Y, et al. Point discharge optical emission spectrometer as a gas chromatography (GC) detector for speciation analysis of mercury in human hair. Anal Chem 2018;90:11996-2003.
29. Kosta L, Byrne AR, Dermelj M. Trace elements in some human milk samples by radiochemical neutron activation analysis. Sci Total Environ 1983;29:261-8.
30. Song Y, Guo F, Zeng P, Liu J, Wang Y, Cheng H. Simultaneous measurements of Cr, Cd, Hg and Pb species in ng L-1 levels by interfacing high performance liquid chromatography and inductively coupled plasma mass spectrometry. Anal Chim Acta 2022;1212:339935.
31. Li W, Sun L, Liu C, et al. Supramolecular FeII4L4 cage for fast ammonia sensing. J Mater Chem C 2022;10:9216-21.
32. Zhang Z, Zhao Z, Wu L, et al. Emissive platinum(II) cages with reverse fluorescence resonance energy transfer for multiple sensing. J Am Chem Soc 2020;142:2592-600.
34. Ham R, Nielsen CJ, Pullen S, Reek JNH. Supramolecular coordination cages for artificial photosynthesis and synthetic photocatalysis. Chem Rev 2023;123:5225-61.
35. Bell DJ, Natrajan LS, Riddell IA. Design of lanthanide based metal-organic polyhedral cages for application in catalysis, sensing, separation and magnetism. Coordin Chem Rev 2022;472:214786.
36. Hou YJ, Wu K, Wei ZW, et al. Design and enantioresolution of homochiral Fe(II)-Pd(II) coordination cages from stereolabile metalloligands: stereochemical stability and enantioselective separation. J Am Chem Soc 2018;140:18183-91.
37. Giri N, Del Pópolo MG, Melaugh G, et al. Liquids with permanent porosity. Nature 2015;527:216-20.
38. Rimsza JM, Nenoff TM. Porous liquids: computational design for targeted gas adsorption. ACS Appl Mater Interfaces 2022;14:18005-15.
39. Kim T, Park JY, Hwang J, Seo G, Kim Y. Supramolecular two-dimensional systems and their biological applications. Adv Mater 2020;32:e2002405.
40. Shi L, Lu S. Precise carbon dots synthesis: building bridges between organic chemistry and inorganic chemistry. Sci Bull 2022;67:2369-71.
41. Shi L, Wang B, Lu S. Efficient bottom-up synthesis of graphene quantum dots at an atomically precise level. Matter 2023;6:728-60.
42. Han X, Guo C, Xu C, et al. Water-soluble metallo-supramolecular nanoreactors for mediating visible-light-promoted cross-dehydrogenative coupling reactions. ACS Nano 2023;17:3723-36.
43. Zheng S, Xu Y, Su P, et al. Anion-induced differential assembly and structural transformation of supramolecular coordination cages. Chinese Chem Lett 2023:108477.
44. Liu W, Liu G, Zhu X, et al. Tailored metal-organic tetrahedral nanocages with aggregation-induced emission for an anti-counterfeiting ink and stimulus-responsive luminescence. New J Chem 2022;46:8062-8.
45. Miao L, Zhu X, Liu G, et al. Tunable aggregation-induced fluorescent and pressure-responsive luminescence supramolecular cages achieved by subcomponent self-assembly. Chinese Chem Lett 2023;34:107921.
46. Wang QQ, Day VW, Bowman-James K. Chemistry and structure of a host-guest relationship: the power of NMR and X-ray diffraction in tandem. J Am Chem Soc 2013;135:392-9.
47. Zhang D, Ronson TK, Greenfield JL, et al. Enantiopure [Cs+/Xe⊂Cryptophane]⊂FeII4L4 hierarchical superstructures. J Am Chem Soc 2019;141:8339-45.
48. Liu X, Shi Z, Xie M, et al. Single-handed double helix and spiral platelet formed by racemate of dissymmetric cages. Angew Chem Int Ed Engl 2021;60:15080-6.
49. Fantozzi N, Pétuya R, Insuasty A, et al. Selective detection of choline in pseudophysiological medium with a fluorescent cage receptor. Org Lett 2023;25:2444-9.
50. Chakraborty S, Newkome GR. Terpyridine-based metallosupramolecular constructs: tailored monomers to precise 2D-motifs and 3D-metallocages. Chem Soc Rev 2018;47:3991-4016.
51. Chen Y, Wu G, Chen B, et al. Self-assembly of a purely covalent cage with homochirality by imine formation in water. Angew Chem Int Ed Engl 2021;60:18815-20.
52. Harris K, Fujita D, Fujita M. Giant hollow MnL2n spherical complexes: structure, functionalisation and applications. Chem Commun 2013;49:6703-12.
53. Yan LL, Yao LY, Ng M, Yam VW. Stimuli-responsive and structure-adaptive three-dimensional gold(I) cluster cages constructed via "de-aurophilic" interaction strategy. J Am Chem Soc 2021;143:19008-17.
55. Wilson A, Gasparini G, Matile S. Functional systems with orthogonal dynamic covalent bonds. Chem Soc Rev 2014;43:1948-62.
57. Montà-González G, Sancenón F, Martínez-Máñez R, Martí-Centelles V. Purely covalent molecular cages and containers for guest encapsulation. Chem Rev 2022;122:13636-708.
58. Wang H, Jin Y, Sun N, Zhang W, Jiang J. Post-synthetic modification of porous organic cages. Chem Soc Rev 2021;50:8874-86.
59. Quan MLC, Cram DJ. Constrictive binding of large guests by a hemicarcerand containing four portals. J Am Chem Soc 1991;113:2754-5.
60. Bravin C, Badetti E, Licini G, Zonta C. Tris(2-pyridylmethyl)amines as emerging scaffold in supramolecular chemistry. Coordin Chem Rev 2021;427:213558.
61. Fernández-Caro H, Lostalé-Seijo I, Martínez-Calvo M, Mosquera J, Mascareñas JL, Montenegro J. Supramolecular caging for cytosolic delivery of anionic probes. Chem Sci 2019;10:8930-8.
62. Hashikawa Y, Murata Y. Probing the regioselectivity with encapsulated H2: diels-alder reaction of an open-cage C60 derivative with anthracene. Chemistry 2019;25:2482-5.
63. Plessius R, Orth N, Ivanović-Burmazović I, Siegler MA, Reek JNH, van der Vlugt JI. Reversible multi-electron storage in dual-site redox-active supramolecular cages. Chem Commun 2019;55:12619-22.
64. Wu SY, Guo XQ, Zhou LP, Sun QF. Fine-tuned visible and near-infrared luminescence on self-assembled lanthanide-organic tetrahedral cages with triazole-based chelates. Inorg Chem 2019;58:7091-8.
65. Bhatta SR, Mondal B, Vijaykumar G, Thakur A. ICT-isomerization-induced turn-on fluorescence probe with a large emission shift for mercury ion: application in combinational molecular logic. Inorg Chem 2017;56:11577-90.