백윤정 교수
Yunjung Baek
KAIST 화학과 · 재료과학
연구실 소개
백윤정 교수의 연구실은 코발트 기반 고분자 촉매 및 광촉매를 중심으로, 삼가성 코발트(III) 이미도 복합체의 합성과 반응성, 특히 C–H 아미nation 반응을 통한 유기합성에 응용하는 데 초점을 맞추고 있습니다. 특히, 고리형 다피리딘 라이그란드를 활용한 전자구조 제어와 산화환원 반응성 조절을 통해 새로운 금속 복합체를 설계하고 있으며, 광화학 반응에서의 전자 이동 메커니즘과 관련된 이ridium 기반 광감각제의 고립 및 특성 분석도 진행 중입니다. 이는 촉매 설계의 기초 이론을 심화하고, 태양광 활용 반응의 효율성을 높이는 데 기여합니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15Reduction of (<sup>Ar</sup>L)Co<sup>II</sup>Br (<sup>Ar</sup>L = 5-mesityl-1,9-(2,4,6-Ph<sub>3</sub>C<sub>6</sub>H<sub>2</sub>)dipyrrin) with potassium graphite afforded the novel Co<sup>I</sup> synthon (<sup>Ar</sup>L)Co<sup>I</sup>. Treatment of (<sup>Ar</sup>L)Co<sup>I</sup> with a stoichiometric amount of various alkyl azides (N<sub>3</sub>R) furnished three-coordinate Co<sup>III</sup> alkyl imidos (<sup>Ar</sup>L)Co(NR), as confirmed by single-crystal X-ray diffraction (R: CMe<sub>2</sub>Bu
Treatment of (<sup>Ar</sup>L)CoBr (<sup>Ar</sup>L = 5-mesityl-1,9-(2,4,6-Ph<sub>3</sub>C<sub>6</sub>H<sub>2</sub>)dipyrrin) with a stoichiometric amount of 1-azido-4-(<i>tert</i>-butyl)benzene N<sub>3</sub>(C<sub>6</sub>H<sub>4</sub>-<i>p</i>-<sup><i>t</i></sup>Bu) furnished the corresponding four-coordinate organoazide-bound complex (<sup>Ar</sup>L)CoBr(N<sub>3</sub>(C<sub>6</sub>H<sub>4</sub>-<i>p</i>-<sup><i>t</i></sup>Bu)). Spectroscopic and structural characterization of the complex indicat
We report the catalytic C-H amination mediated by an isolable Co<sup>III</sup> imido complex (<sup>Tr</sup>L)Co(NR) supported by a sterically demanding dipyrromethene ligand (<sup>Tr</sup>L = 5-mesityl-1,9-(trityl)dipyrrin). Metalation of (<sup>Tr</sup>L)Li with CoCl<sub>2</sub> in THF afforded a high-spin (<i>S</i> = 3/2) three-coordinate complex (<sup>Tr</sup>L)CoCl. Chemical reduction of (<sup>Tr</sup>L)CoCl with potassium graphite yielded the high-spin (<i>S</i> = 1) Co<sup>I</sup> synthon (
One-electron reduced photosensitizers have been invoked as crucial intermediates in photoredox catalysis, including multiphoton excitation and electrophotocatalytic processes. However, such reduced chromophores have been less investigated, limiting mechanistic studies of their associated electron transfer processes. Here, we report a total of 11 different examples of isolable singly reduced iridium chromophores. Chemical reduction of a cyclometalated iridium complex with potassium graphite affor
Abstract The reactivity of ( Tr L)Co ( Tr L=5‐mesityl‐1,9‐(trityl)dipyrrin) toward various aryl azides was examined to elucidate the electronic structure and reactivity of dipyrrinato cobalt aryl nitrenoid complexes. Herein, we demonstrate the synthesis of a Co II diketimide complex [( Tr L)Co(NC 6 F 5 )] 2 and its reversible C−C bond cleavage to yield a monomeric Co nitrenoid complex ( Tr L)Co(NC 6 F 5 ). Exposure of [( Tr L)Co(NC 6 F 5 )] 2 to an excess amount of an H‐atom donor cleanly afford
Inspired by the prominent redox and optical properties of natural flavins, synthetic flavins have found broad applications in organic, photochemical, and biochemical research. Tailoring these properties of flavins, however, remains a challenge. In this work, we present three pentacyclic flavins (C-PF, O-PF, and S-PF) that leverage a strategic molecular design to modify the flavin’s electronic structure. Notably, the oxygen- and sulfur-linked pentacyclic flavins (O-PF and S-PF) exhibit deep-red a
High Resolution Image Download MS PowerPoint Slide Flavins─one of nature’s most ubiquitous organic cofactors─mediate proton and electron transfers in biological systems. Their heterocyclic (iso)alloxazine cores enable such reactivity through pronounced electro- and photochemical properties, as well as hydrogen bonding with surrounding residues. To harness these features in an organometallic context, we developed a redox-active, flavin-derived bidentate ligand ( all LH ) that engages both primary
Abstract The reactivity of ( Tr L)Co ( Tr L=5‐mesityl‐1,9‐(trityl)dipyrrin) toward various aryl azides was examined to elucidate the electronic structure and reactivity of dipyrrinato cobalt aryl nitrenoid complexes. Herein, we demonstrate the synthesis of a Co II diketimide complex [( Tr L)Co(NC 6 F 5 )] 2 and its reversible C−C bond cleavage to yield a monomeric Co nitrenoid complex ( Tr L)Co(NC 6 F 5 ). Exposure of [( Tr L)Co(NC 6 F 5 )] 2 to an excess amount of an H‐atom donor cleanly afford
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available from the CCDC and typically includes 3D coordinates, cell parameters, space group, experimental conditions and quality measures.
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available from the CCDC and typically includes 3D coordinates, cell parameters, space group, experimental conditions and quality measures.
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available from the CCDC and typically includes 3D coordinates, cell parameters, space group, experimental conditions and quality measures.
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available from the CCDC and typically includes 3D coordinates, cell parameters, space group, experimental conditions and quality measures.
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available from the CCDC and typically includes 3D coordinates, cell parameters, space group, experimental conditions and quality measures.
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available from the CCDC and typically includes 3D coordinates, cell parameters, space group, experimental conditions and quality measures.
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