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剥落黑磷介导的铜催化炔烃环加成反应化学用于白光LED和近红外光照射下的有机及大分子合成

Exfoliated black phosphorous-mediated CuAAC chemistry for organic and macromolecular synthesis under white LED and near-IR irradiation.

作者信息

Kocaarslan Azra, Eroglu Zafer, Metin Önder, Yagci Yusuf

机构信息

Department of Chemistry, Istanbul Technical University, Maslak, 34469 Istanbul, Turkey.

Department of Chemistry, Koç University, Sarıyer, 34450, Istanbul, Turkey.

出版信息

Beilstein J Org Chem. 2021 Sep 23;17:2477-2487. doi: 10.3762/bjoc.17.164. eCollection 2021.

Abstract

The development of long-wavelength photoinduced copper-catalyzed azide-alkyne click (CuAAC) reaction routes is attractive for organic and polymer chemistry. In this study, we present a novel synthetic methodology for the photoinduced CuAAC reaction utilizing exfoliated two-dimensional (2D) few-layer black phosphorus nanosheets (BPNs) as photocatalysts under white LED and near-IR (NIR) light irradiation. Upon irradiation, BPNs generated excited electrons and holes on its conduction (CB) and valence band (VB), respectively. The excited electrons thus formed were then transferred to the Cu ions to produce active Cu catalysts. The ability of BPNs to initiate the CuAAC reaction was investigated by studying the reaction between various low molar mass alkyne and azide derivatives under both white LED and NIR light irradiation. Due to its deeper penetration of NIR light, the possibility of synthesizing different macromolecular structures such as functional polymers, cross-linked networks and block copolymer has also been demonstrated. The structural and molecular properties of the intermediates and final products were evaluated by spectral and chromatographic analyses.

摘要

长波长光诱导铜催化叠氮化物-炔烃环加成(CuAAC)反应路线的发展对有机化学和高分子化学具有吸引力。在本研究中,我们提出了一种新型的光诱导CuAAC反应合成方法,该方法利用剥离的二维(2D)少层黑磷纳米片(BPNs)作为光催化剂,在白光发光二极管(LED)和近红外(NIR)光照射下进行反应。光照时,BPNs分别在其导带(CB)和价带(VB)上产生激发电子和空穴。然后,由此形成的激发电子转移到铜离子上,以产生活性铜催化剂。通过研究各种低摩尔质量炔烃和叠氮化物衍生物在白光LED和近红外光照射下的反应,研究了BPNs引发CuAAC反应的能力。由于近红外光具有更深的穿透性,因此也证明了合成不同大分子结构(如功能聚合物、交联网络和嵌段共聚物)的可能性。通过光谱和色谱分析对中间体和最终产物的结构和分子性质进行了评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79c2/8474068/a0cdd7b981e2/Beilstein_J_Org_Chem-17-2477-g002.jpg

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