| Literature DB >> 35685813 |
Qi Tang1, Shi-Jun Li2, Xiaohan Ye1, Teng Yuan1, Kai Zhao1, Ying He1, Chuan Shan1, Lukasz Wojtas1, David Richardson3, Yu Lan2, Xiaodong Shi1.
Abstract
A new class of stable four-coordinated benzotriazole-borane compounds was developed via gold-catalyzed alkyne hydroboration. The application of polymeric (BH2CN) n reagent gave the formation of cyano-amine-boranes (CAB) complexes with less basic N-heterocyclic amines and anilines. Various new CABs were investigated in catalytic hydroboration to synthesize N-B cycles. The 1,2,3-benzotriazoles were identified as the only feasible N-source, giving the four coordinated borane N-B cycles (BTAB) in excellent yields (up to 90%) with good functional group tolerability. This new class of polycyclic N-B compounds showed excellent stability toward acid, base, high temperature, and photo-irradiation. The facile synthesis, excellent stability, strong and tunable fluorescence emission make BTAB interesting new fluorescent probes for future chemical and biological applications. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35685813 PMCID: PMC9132079 DOI: 10.1039/d2sc01103d
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.969
Scheme 1N–B heterocycles as new molecular probes.
Fig. 1Challenges of hydroboration toward N–B cycle construction.
Fig. 2New CAB synthesis strategy and hydroboration.
Optimization of reaction conditionsa,b
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| Entry | Variation from “standard conditions” | Convn. (%) | 3a (%) | 1e (%) |
| 1 | None | 100 | 90 (87) | <5 |
| 2 | [Au] = PPh3AuNTf2 | <5 | n.d. | n.d. |
| 3 | IPrAuNTf2 | 70 | 20 | 38 |
| 4 | JohnPhosAuNTf2 | 80 | 45 | 24 |
| 5 | (ArO)3PAuNTf2 | 52 | 10 | 35 |
| 6 | SPhosAuNTf2 | 95 | 78 | 10 |
| 7 | TA-Au: RuPhosAu(TA-H)OTf | 43 | 8 | 30 |
| 8 | [Au] + [Cu]: RuPhosAu(TA-H)OTf + Cu(OTf)2 | 20 | <5 | n.d. |
| 9 | Other solvents (CH3CN, THF, tol, MeOH. See details in ESI) | <89 | <71 | — |
| 10 | 5% [Au] | 65 | 54 | <5 |
| 11 | 60 °C | 65 | 30 | — |
| 12 | Other metal cat. (Ag, Cu, Zr, Zn | <10% | n.d. | — |
Conditions: 1e-CAB (0.1 mmol), Au cat. (0.01 mmol), DCE (2 mL), 80 °C, 12 h.
1H NMR yields using 1,3,5-tribromobenzene as an internal standard (isolated yields).
Reaction scope and BTAB derivatizationa,b,c
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Conditions: 4a (0.2 mmol), Au cat. (0.01 mmol), DCE (2 mL), 80 °C, 12 h.
Isolated yields.
brsm = based on recovered starting material.
Fig. 3BTAB derivatization: the extremely stable TA-B coordination.
Fig. 4BTAB photophysical properties.