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Yangjun Xia

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Articles 18
Citations 163
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Recent Articles
1.
Guan S, Liang J, Zhuang C, Wang Q, Guo P, Wang C, et al.
ACS Appl Mater Interfaces . 2025 Feb; 17(7):10907-10919. PMID: 39920040
Understanding the impact of molecular structure on the molecular packing arrangement and aggregation behaviors of organic semiconductor materials is crucial for investigating their properties in multiple organic photoelectrical applications. In...
2.
Guo P, Gan X, Guan S, Gao P, Wang Q, Shi F, et al.
RSC Adv . 2024 Apr; 14(17):11659-11667. PMID: 38605895
Fluorination is one of the most effective ways to manipulate molecular packing, optical bandgap and molecular energy levels in organic semiconductor materials. In this work, different number of fluorine atoms...
3.
Jia Y, Gao J, Xiao Z, Tian Z, Xia Y, Wang C
ACS Appl Mater Interfaces . 2023 May; 15(21):26111-26119. PMID: 37212333
Optimal design of the photocathode is crucial and a meaningful approach for regulating many important photoelectrochemical (PEC) reactions. Interfacial engineering is substantiated as an effective tactic for tuning the direction...
4.
Shi F, Guo P, Qiao X, Yao G, Zhang T, Lu Q, et al.
Adv Mater . 2023 Mar; 35(23):e2212084. PMID: 36924360
Nonfullerene-acceptor-based organic solar cells (NFA-OSCs) are now set off to the 20% power conversion efficiency milestone. To achieve this, minimizing all loss channels, including nonradiative photovoltage losses, seems a necessity....
5.
Lu Q, Ding M, Zhou A, Guo P, Wang Q, Li D, et al.
ACS Appl Mater Interfaces . 2023 Feb; PMID: 36757378
Alcohol-soluble conjugated polymers with polar side-chain components have been regarded as one of the most promising cathode interfacial modifers (CIMs) to achieve high-performance organic solar cells (OSCs). Herein, a novel...
6.
Liu X, Liang Z, Du S, Niu X, Tong J, Yang C, et al.
ACS Appl Mater Interfaces . 2022 Feb; 14(7):9386-9397. PMID: 35148049
A ternary strategy of halogen-free solvent processing can open up a promising pathway for the preparation of polymer solar cells (PSCs) on a large scale and can effectively improve the...
7.
Liu X, Ma R, Wang Y, Du S, Tong J, Shi X, et al.
ACS Appl Mater Interfaces . 2021 Feb; 13(9):11117-11124. PMID: 33635064
Traditional additives like 1,8-diiodooctane and 1-chloronaphthalene were successfully utilized morphology optimization of various polymer solar cells (PSCs) in an active layer, but their toxicity brought by halogen atoms limits their...
8.
Xiao Z, Jia Y, Lin M, Xia Y, Wang C
ACS Appl Mater Interfaces . 2021 Feb; 13(7):8129-8137. PMID: 33560118
An electrochemical N reduction reaction (NRR) is a selective sustainable approach to obtain NH at mild conditions and has been proposed as an alternative to the full-blown Haber-Bosch process. However,...
9.
Li J, Liang Z, Li X, Li H, Wang Y, Qin J, et al.
ACS Appl Mater Interfaces . 2020 Jan; 12(7):8475-8484. PMID: 31965782
Ternary copolymerization strategy is considered an effective method to achieve high-performance photovoltaic conjugated polymers. Herein, a donor-acceptor1-donor-acceptor2-type random copolymer, named PBDTNS-TZ-BDD (T1), containing one electron-rich unit alkylthionaphthyl-flanked benzo[1,2-/4,5-'] di-thiophene (BDTNS)...
10.
Li J, Wang Y, Wang N, Liang Z, Wang X, Peng Y, et al.
Polymers (Basel) . 2019 Sep; 11(9). PMID: 31500164
A novel ()-5-(2-(5-alkylthiothiophen-2-yl)vinyl)thien-2-yl (TVT)-comprising benzo[1,2-b:4,5-b']dithiophene (BDT) derivative (BDT-TVT) was designed and synthetized to compose two donor-acceptor (D-A) typed copolymers (PBDT-TVT-ID and PBDT-TVT-DTNT) with the electron-withdrawing unit isoindigo (ID) and naphtho[1,2-c:5,6-c']bis[1,2,5]thiadiazole...