The University of Osaka · Materials Science
Akinori Saeki 교수의 연구실은 유기 반도체 소재 및 장치의 핵심 물성과 기계적 특성에 기반한 고성능 유기 전자소자 개발에 중점을 두고 있습니다. 특히 유기 태양전지, 페로브스카이트 태양전지, 유기 반도체 다이오드 등에서의 전하 수송 메커니즘, 전도도 동역학, 그리고 물질 설계의 데이터 기반 최적화를 연구하고 있습니다. 고속 시간해상 분석 기법인 TRMC와 동시 측정 시스템을 활용해 광흡수와 전하 생성의 동역학을 정밀하게 분석하는 데도 기여하고 있습니다. 연구는 환경 친화적인 무도핑, 무첨가제 기반 소재 개발을 통해 실용화 가능성을 높이는 데에도 기여하고 있습니다.
Figures are computed from collected data and may differ slightly.
Si-based inorganic electronics have long dominated the semiconductor industry. However, in recent years conjugated polymers have attracted increasing attention because such systems are flexible and offer the potential for low-cost, large-area production via roll-to-roll processing. The state-of-the-art organic conjugated molecular crystals can exhibit charge carrier mobilities (μ) that nearly match or even exceed that of amorphous silicon (1-10 cm(2) V(-1) s(-1)). The mean free path of the charg
Owing to the diverse chemical structures, organic photovoltaic (OPV) applications with a bulk heterojunction framework have greatly evolved over the last two decades, which has produced numerous organic semiconductors exhibiting improved power conversion efficiencies (PCEs). Despite the recent fast progress in materials informatics and data science, data-driven molecular design of OPV materials remains challenging. We report a screening of conjugated molecules for polymer-fullerene OPV applicati
The optoelectronic properties of single-crystal rubrene are investigated by microwave and optical spectroscopy, demonstrating the anisotropy, ambipolarity, and dynamics of the charge carriers. They are discussed in terms of charge recombination, exciton-exciton annihilation, quantum efficiency, triplet contribution, the extinction coefficient of radical cations/anions, and density functional theory. Supporting information for this article is available on the WWW under http://www.wiley-vch.de/con
Perovskite solar cells (PSCs) and organic solar cells (OSCs) are promising renewable light-harvesting technologies with high performance, but the utilization of hazardous dopants and high boiling additives is harmful to all forms of life and the environment. Herein, new multirole π-conjugated polymers (P1-P3) are developed via a rational design approach through theoretical hindsight, further successfully subjecting them into dopant-free PSCs as hole-transporting materials and additive-free OSCs
State-of-the-art low band gap conjugated polymers have been investigated for application in organic photovoltaic cells (OPVs) to achieve efficient conversion of the wide spectrum of sunlight into electricity. A remarkable improvement in power conversion efficiency (PCE) has been achieved through the use of innovative materials and device structures. However, a reliable technique for the rapid screening of the materials and processes is a prerequisite toward faster development in this area. Here
An in-situ measurement system for flash-photolysis time-resolved microwave conductivity (FP-TRMC) and transient optical spectroscopy (TOS) has been developed to perform simultaneous measurements of photo-induced changes in conductivity and charge-carrier density in an organic thin film. The electric field in the resonant cavity designed for the present system was analysed by electrostatic simulation. Using the present system and the simulated electric field, the photoconductivity and transient a
A π-conjugated amphiphilic diketopyrrolopyrrole (PDPP-Amphi) forms crystalline 2D supramolecular nanosheets in water when compared to that from methyl cyclohexane. These nanosheets exhibit high fluorescence quantum yield in the solid-state with anisotropic charge-carrier mobility of 0.33 cm<sup>2</sup> V<sup>-1</sup> s<sup>-1</sup> .
Abstract A correlation between the photovoltaic performance and dynamics of transient photoconductivity is investigated by flash‐photolysis time‐resolved microwave conductivity (FP‐TRMC). This electrode‐less technique offers chances to mitigate barriers for direct, speedy, and robust evaluation of bulk heterojunction (BHJ) film. We examined the blend ratio, process (solvent and thermal annealing), and impurity (a metal complex of Pd) and degradation effects in BHJ films consisting of poly(3‐hexy
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