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Detection of the Fungicide Dodine by means of Host-Guest Complexation between Cucubit[10]uril and Acridine Orange (2022)
Journal Article
Wang, C., Zou, H., Cong, H., Huang, Y., Tao, Z., Redshaw, C., & Xiao, X. (2022). Detection of the Fungicide Dodine by means of Host-Guest Complexation between Cucubit[10]uril and Acridine Orange. ChemistrySelect, 7(28), Article e202201584. https://doi.org/10.1002/slct.202201584

The interaction between acridine orange (AO) and cucurbit[10]uril, Q[10] affords the ternary complex 2AO@Q[10]. Subsequent addition of dodine (DD) displaces AO from the Q[10] cavity, and results in a fluorescent output. The effect of 20 different pes... Read More about Detection of the Fungicide Dodine by means of Host-Guest Complexation between Cucubit[10]uril and Acridine Orange.

Lipid Droplet-Specific Red Aggregation-Induced Emission Luminogens: Fast Light-Up of Gram-Positive Pathogens for Identification of Bacteria (2022)
Journal Article
Wang, X., Song, M., Liu, Y., Feng, X., Redshaw, C., Wang, D., Zhu, K., Li, Y., & Tang, B. Z. (2022). Lipid Droplet-Specific Red Aggregation-Induced Emission Luminogens: Fast Light-Up of Gram-Positive Pathogens for Identification of Bacteria. ACS Materials Letters, 4(8), 1523-1530. https://doi.org/10.1021/acsmaterialslett.2c00551

Gram-positive (G+) and Gram-negative (G-) bacteria require considerable differences in their therapeutic strategies. Thus, the development of highly efficient techniques for differentiating G+and G-bacteria is of vital importance for practical clinic... Read More about Lipid Droplet-Specific Red Aggregation-Induced Emission Luminogens: Fast Light-Up of Gram-Positive Pathogens for Identification of Bacteria.

Y-Shaped Pyrene-Based Aggregation-Induced Emission Blue Emitters for High-Performance OLED Devices (2022)
Journal Article
Zeng, J., Qiu, N., Zhang, J., Wang, X., Redshaw, C., Feng, X., Lam, J. W. Y., Zhao, Z., & Tang, B. Z. (2022). Y-Shaped Pyrene-Based Aggregation-Induced Emission Blue Emitters for High-Performance OLED Devices. Advanced Optical Materials, Article 2200917. https://doi.org/10.1002/adom.202200917

The proposed concept of aggregation-induced emission (AIE) has offered an efficient strategy to design high-performance luminescent materials. Herein, three blue emitters containing a pyrene core decorated with either triphenylamine or tetraphenyleth... Read More about Y-Shaped Pyrene-Based Aggregation-Induced Emission Blue Emitters for High-Performance OLED Devices.

Trinuclear zinc calix[4]arenes: synthesis, structure, and ring opening polymerization studies (2022)
Journal Article
Xing, T., Frese, J., Derbyshire, M., Glenister, M. A., Elsegood, M. R. J., & Redshaw, C. (2022). Trinuclear zinc calix[4]arenes: synthesis, structure, and ring opening polymerization studies. Dalton Transactions : an international journal of inorganic chemistry, https://doi.org/10.1039/d2dt01496c

The trinuclear zinc calix[4]arene complexes [Zn3(O2CCH3)2(L(O)2(OMe)2)2·xMeCN (x = 7.5, 1; x = 6, 1′), [Zn3(O2CCH3)2(L(O)2(OnPr)2)2·5MeCN (2·5MeCN), [Zn3(OEt)2(L(O)2(OMe)2)2]·4MeCN (3·4MeCN), [Zn3(OEt)2(L(Opentyl)2)2]·4.5MeCN (4·4.5MeCN) and [Zn3(OH)... Read More about Trinuclear zinc calix[4]arenes: synthesis, structure, and ring opening polymerization studies.

Naphthaldehyde-based Schiff base dyes: aggregation-induced emission and high-contrast reversible mechanochromic luminescence (2022)
Journal Article
Shen, L., Yu, C. J., Xie, H. F., Xu, N., Xu, H., Huang, Y. L., Redshaw, C., Feng, X., & Zhang, Q. L. (2022). Naphthaldehyde-based Schiff base dyes: aggregation-induced emission and high-contrast reversible mechanochromic luminescence. Materials Chemistry Frontiers, https://doi.org/10.1039/d2qm00542e

Mechanochromic luminescent materials have attracted intense attention because of their excellent reversible optical behaviour, but the mechanism of the stimuli responsive behaviour remains ambiguous. Herein, a novel naphthaldehyde-based Schiff base,... Read More about Naphthaldehyde-based Schiff base dyes: aggregation-induced emission and high-contrast reversible mechanochromic luminescence.

Niobium and Tantalum complexes derived from the acids Ph<inf>2</inf>C(X)CO<inf>2</inf>H (X = OH, NH<inf>2</inf>): synthesis, structure and ROP capability (2022)
Journal Article
Zhang, X., Prior, T. J., & Redshaw, C. (2022). Niobium and Tantalum complexes derived from the acids Ph2C(X)CO2H (X = OH, NH2): synthesis, structure and ROP capability. New journal of chemistry = Nouveau journal de chimie, https://doi.org/10.1039/d2nj02527b

Reaction of benzilic acid, Ph2C(OH)(CO2H), L1H2, with equimolar amounts of M(OR)5 (M = Nb, Ta) led, following work-up, to the tetranuclear complexes [Nb4(OEt)8(L1)4(μ-O)2] (1) or [Ta4(OEt)8(L1)4(μ-O)2]·0.5MeCN (2·0.5MeCN), respectively. Similar use o... Read More about Niobium and Tantalum complexes derived from the acids Ph<inf>2</inf>C(X)CO<inf>2</inf>H (X = OH, NH<inf>2</inf>): synthesis, structure and ROP capability.

Intermolecular Hydrogen-Bond-Assisted Solid-State Dual-Emission Molecules with Mechanical Force-Induced Enhanced Emission (2022)
Journal Article
Wang, X., Zhang, J., Mao, X., Liu, Y., Li, R., Bai, J., Zhang, J., Redshaw, C., Feng, X., & Tang, B. Z. (2022). Intermolecular Hydrogen-Bond-Assisted Solid-State Dual-Emission Molecules with Mechanical Force-Induced Enhanced Emission. Journal of Organic Chemistry, 87(13), 8503–8514. https://doi.org/10.1021/acs.joc.2c00617

Hydrogen bonds not only play a crucial role in the life sciences but also endow molecules with fantastic physical and chemical properties, which help in the realization of their high-tech applications. This work presents an efficient strategy for ach... Read More about Intermolecular Hydrogen-Bond-Assisted Solid-State Dual-Emission Molecules with Mechanical Force-Induced Enhanced Emission.

Cucurbit[6]uril-based supramolecular frameworks formed through outer surface interactions and application for iodine adsorption (2022)
Journal Article
Hu, J. H., Cen, R., Liu, M., Shan, P. H., Prior, T. J., Redshaw, C., Huang, Y., Tao, Z., & Xiao, X. (2022). Cucurbit[6]uril-based supramolecular frameworks formed through outer surface interactions and application for iodine adsorption. Inorganic Chemistry Communications, 142, Article 109663. https://doi.org/10.1016/j.inoche.2022.109663

The interaction between the outer surface of cucurbit[6]uril (Q[6]) and methyl triphenyl phosphorus iodide (MTPI) has been studied in the presence of [CdCl4]2-. The MTPI is connected to four neighboring Q[6]s through weak interactions such as C-H···π... Read More about Cucurbit[6]uril-based supramolecular frameworks formed through outer surface interactions and application for iodine adsorption.

Mixed-metal calix[8]arene complexes: structure, and ring opening polymerisation studies (2022)
Journal Article
Xing, T., Derbyshire, M., Elsegood, M. R., & Redshaw, C. (2022). Mixed-metal calix[8]arene complexes: structure, and ring opening polymerisation studies. Chemical communications : Chem comm / the Royal Society of Chemistry, 58(53), 7427-7430. https://doi.org/10.1039/d2cc02236b

Reactions of différent combinations of group V alkoxides or tungsten oxyalkoxide salts with p-tert-butylcalix[8]areneH8 (L8H8) affords mixed-metal calix[8]arene systems. Intruiging molecular structures are formed and the systems are capable of the ri... Read More about Mixed-metal calix[8]arene complexes: structure, and ring opening polymerisation studies.

Progress in host–guest macrocycle/pesticide research: Recognition, detection, release and application (2022)
Journal Article
Shan, P. H., Hu, J. H., Liu, M., Tao, Z., Xiao, X., & Redshaw, C. (2022). Progress in host–guest macrocycle/pesticide research: Recognition, detection, release and application. Coordination chemistry reviews, 467, Article 214580. https://doi.org/10.1016/j.ccr.2022.214580

Macrocyclic compounds are formed via a series of cyclic oligomers possessing repeating units, and classical examples include cyclodextrins, calix[n]arenes, cucurbit[n]urils and pillar[n]arenes (n represents the number of repeat units). Given their un... Read More about Progress in host–guest macrocycle/pesticide research: Recognition, detection, release and application.