A pH-Sensitive Lasso-Based Rotaxane Molecular Switch

被引:70
|
作者
Clavel, Caroline [1 ]
Romuald, Camille [1 ]
Brabet, Emile [1 ]
Coutrot, Frederic [1 ]
机构
[1] Univ Montpellier 2 & 1, Supramol Machines & ARchitectures Team SMART, IBMM, UMR CNRS 5247, F-34095 Montpellier 5, France
关键词
crown complexes; lasso; molecular switch; self-entanglement; rotaxanes; TRANSITION-METAL-COMPLEXES; DONOR-ACCEPTOR; LIGHT-DRIVEN; MACHINES; PORPHYRIN; CHAIN; CYCLODEXTRIN; CONTRACTION; TURNSTILES; CHEMISTRY;
D O I
10.1002/chem.201203597
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The synthesis of a pH-sensitive two-station [1]rotaxane molecular switch by self-entanglement of a non-interlocked hermaphrodite molecule, containing an anilinium and triazole moieties, is reported. The anilinium was chosen as the best template for the macrocycle benzometaphenylene[25]crown-8 (BMP25C8) and allowed the self-entanglement of the molecule. The equilibrium between the hermaphrodite molecule and the pseudo[1]rotaxane was studied by 1HNMR spectroscopy: the best conditions of self-entanglement were found in the less polar solvent CD2Cl2 and at high dilution. The triazole moiety was then benzylated to afford a benzyltriazolium moiety, which then played a dual role. On one hand, it acts as a bulky gate to trap the BMP25C8, thus to avoid any self-disentanglement of the molecular architecture. On another hand, it acts as a second molecular station for the macrocycle. At acidic pH, the BMP25C8 resides around the best anilinium molecular station, displaying the lasso [1]rotaxane in a loosened conformation. The deprotonation of the anilinium molecular station triggers the shuttling of the BMP25C8 around the triazolium moiety, therefore tightening the lasso.
引用
收藏
页码:2982 / 2989
页数:8
相关论文
共 50 条
  • [21] pH-sensitive hydrogel based on a polyaspartamide derivative
    Giammona, G
    Pitarresi, G
    Cavallaro, G
    Carlisi, B
    Craparo, EF
    Mandracchia, D
    JOURNAL OF DRUG DELIVERY SCIENCE AND TECHNOLOGY, 2006, 16 (01) : 77 - 84
  • [22] Acetylcholine Detection Based on pH-Sensitive Liposomes
    Kang, Min Kyeong
    Park, Jin-Won
    ACS OMEGA, 2021, 6 (23): : 14963 - 14967
  • [23] pH-sensitive nanocontainers
    Sauer, M
    Streich, D
    Meier, W
    ADVANCED MATERIALS, 2001, 13 (21) : 1649 - 1651
  • [24] Glucose Detection Based on pH-sensitive Liposomes
    Kang, Min Kyeong
    Park, Jin-Won
    SENSORS AND MATERIALS, 2021, 33 (05) : 1749 - 1756
  • [25] PH-SENSITIVE IMMUNOLIPOSOMES
    HUANG, L
    CONNOR, J
    WANG, CY
    METHODS IN ENZYMOLOGY, 1987, 149 : 88 - 99
  • [26] pH-Sensitive hydrogels based on polyhexamethyleneguanidine hydrochloride
    Grigor'eva, M. N.
    Stel'makh, S. A.
    Bazaron, L. U.
    Mognonov, D. M.
    RUSSIAN JOURNAL OF APPLIED CHEMISTRY, 2011, 84 (04) : 724 - 726
  • [27] pH-Sensitive materials
    Corneliussen, Roger
    PLASTICS ENGINEERING, 2007, 63 (03) : 56 - 56
  • [28] Solar Power Generation Forecasting With a LASSO-Based Approach
    Tang, Ningkai
    Mao, Shiwen
    Wang, Yu
    Nelms, R. M.
    IEEE INTERNET OF THINGS JOURNAL, 2018, 5 (02): : 1090 - 1099
  • [29] LASSO-based node adaptive refinement in trajectory optimization
    Zhang S.
    Hou M.-S.
    Xi Tong Cheng Yu Dian Zi Ji Shu/Syst Eng Electron, 5 (1195-1200): : 1195 - 1200
  • [30] A kinetically controlled molecular switch based on bistable [2]rotaxane
    Lee, JW
    Kim, KP
    Kim, K
    CHEMICAL COMMUNICATIONS, 2001, (11) : 1042 - 1043