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Featured researches published by Weijun Niu.


Journal of Medicinal Chemistry | 2011

Discovery of 2-(4-methylfuran-2(5H)-ylidene)malononitrile and thieno[3,2-b]thiophene-2-carboxylic acid derivatives as G protein-coupled receptor 35 (GPR35) agonists.

Huayun Deng; Haibei Hu; Mingqian He; Jieyu Hu; Weijun Niu; Ann M. Ferrie; Ye Fang

Screening with dynamic mass redistribution (DMR) assays in a native cell line HT-29 led to identification of two novel series of chemical compounds, 2-(4-methylfuran-2(5H)-ylidene)malononitrile and thieno[3,2-b]thiophene-2-carboxylic acid derivatives, as GPR35 agonists. Of these, 2-(3-cyano-5-(3,4-dichlorophenyl)-4,5-dimethylfuran-2(5H)-ylidene)malononitrile (YE120) and 6-bromo-3-methylthieno[3,2-b]thiophene-2-carboxylic acid (YE210) were found to be the two most potent GPR35 agonists with an EC50 of 32.5 ± 1.7 nM and 63.7 ± 4.1 nM, respectively. Both agonists exhibited better potency than that of zaprinast, a known GPR35 agonist. DMR antagonist assays, knockdown of GPR35 with interference RNA, receptor internalization assays, and Tango β-arrestin translocation assays confirmed that the agonist activity of these ligands is specific to GPR35. The present study provides novel chemical series as a starting point for further investigations of GPR35 biology and pharmacology.


Scientific Reports | 2016

Significance of the double-layer capacitor effect in polar rubbery dielectrics and exceptionally stable low-voltage high transconductance organic transistors.

Chao Wang; Wen-Ya Lee; Desheng Kong; Raphael Pfattner; Guillaume Schweicher; Reina Nakajima; Chien Lu; Jianguo Mei; Tae Hoon Lee; Hung Chin Wu; Jeffery Lopez; Ying Diao; Xiaodan Gu; Scott Himmelberger; Weijun Niu; James Robert Matthews; Mingqian He; Alberto Salleo; Yoshio Nishi; Zhenan Bao

Both high gain and transconductance at low operating voltages are essential for practical applications of organic field-effect transistors (OFETs). Here, we describe the significance of the double-layer capacitance effect in polar rubbery dielectrics, even when present in a very low ion concentration and conductivity. We observed that this effect can greatly enhance the OFET transconductance when driven at low voltages. Specifically, when the polar elastomer poly(vinylidene fluoride-co-hexafluoropropylene) (e-PVDF-HFP) was used as the dielectric layer, despite a thickness of several micrometers, we obtained a transconductance per channel width 30 times higher than that measured for the same organic semiconductors fabricated on a semicrystalline PVDF-HFP with a similar thickness. After a series of detailed experimental investigations, we attribute the above observation to the double-layer capacitance effect, even though the ionic conductivity is as low as 10–10 S/cm. Different from previously reported OFETs with double-layer capacitance effects, our devices showed unprecedented high bias-stress stability in air and even in water.


Chemical Communications | 2011

Substituent and counterion effects on the formation of π-dimer dications of end-capped heptathienoacenes

Cristina Capel Ferrón; M. Carmen Ruiz Delgado; Víctor Hernández; Juan T. López Navarrete; Barbara Vercelli; Gianni Zotti; Marçal Capdevila Cortada; Juan J. Novoa; Weijun Niu; Mingqian He; František Hartl

We have investigated the impact of the functionalization and the chemical nature of counterions on the π-dimer dications formation in two end-capped heptathienoacenes. Radical cations of an α-substituted heptathienoacene with triisopropylsilyl groups do not π-dimerize, while those of an α,β-substituted heptathienoacene with four n-decyl side chains show a high propensity toward π-dimerization, increased by PF(6)(-) counterions.


Chemistry: A European Journal | 2014

Multistep π Dimerization of Tetrakis(n‐decyl)heptathienoacene Radical Cations: A Combined Experimental and Theoretical Study

Cristina Capel Ferrón; Marçal Capdevila-Cortada; Russell Balster; František Hartl; Weijun Niu; Mingqian He; Juan J. Novoa; Juan T. López Navarrete; Víctor Hernández; M. Carmen Ruiz Delgado

Radical cations of a heptathienoacene α,β-substituted with four n-decyl side groups (D4T7(.) (+) ) form exceptionally stable π-dimer dications already at ambient temperature (Chem. Comm. 2011, 47, 12622). This extraordinary π-dimerization process is investigated here with a focus on the ultimate [D4T7(.) (+) ]2 π-dimer dication and yet-unreported transitory species formed during and after the oxidation. To this end, we use a joint experimental and theoretical approach that combines cyclic voltammetry, in situ spectrochemistry and spectroelectrochemistry, EPR spectroscopy, and DFT calculations. The impact of temperature, thienoacene concentration, and the nature and concentration of counteranions on the π-dimerization process is also investigated in detail. Two different transitory species were detected in the course of the one-electron oxidation: 1) a different transient conformation of the ultimate [D4T7(.) (+) ]2 π-dimer dications, the stability of which is strongly affected by the applied experimental conditions, and 2) intermediate [D4T7]2 (.) (+) π-dimer radical cations formed prior to the fully oxidized [D4T7]2 (.) (+) π-dimer dications. Thus, this comprehensive work demonstrates the formation of peculiar supramolecular species of heptathienoacene radical cations, the stability, nature, and structure of which have been successfully analyzed. We therefore believe that this study leads to a deeper fundamental understanding of the mechanism of dimer formation between conjugated aromatic systems.


Advanced Materials | 2018

Deformable Organic Nanowire Field‐Effect Transistors

Yeongjun Lee; Jin Young Oh; Taeho Roy Kim; Xiaodan Gu; Yeongin Kim; Ging-Ji Nathan Wang; Hung-Chin Wu; Raphael Pfattner; John W. F. To; Toru Katsumata; Donghee Son; Jiheong Kang; James Robert Matthews; Weijun Niu; Mingqian He; Robert Sinclair; Yi Cui; Jeffery B.-H. Tok; Tae-Woo Lee; Zhenan Bao

Deformable electronic devices that are impervious to mechanical influence when mounted on surfaces of dynamically changing soft matters have great potential for next-generation implantable bioelectronic devices. Here, deformable field-effect transistors (FETs) composed of single organic nanowires (NWs) as the semiconductor are presented. The NWs are composed of fused thiophene diketopyrrolopyrrole based polymer semiconductor and high-molecular-weight polyethylene oxide as both the molecular binder and deformability enhancer. The obtained transistors show high field-effect mobility >8 cm2 V-1 s-1 with poly(vinylidenefluoride-co-trifluoroethylene) polymer dielectric and can easily be deformed by applied strains (both 100% tensile and compressive strains). The electrical reliability and mechanical durability of the NWs can be significantly enhanced by forming serpentine-like structures of the NWs. Remarkably, the fully deformable NW FETs withstand 3D volume changes (>1700% and reverting back to original state) of a rubber balloon with constant current output, on the surface of which it is attached. The deformable transistors can robustly operate without noticeable degradation on a mechanically dynamic soft matter surface, e.g., a pulsating balloon (pulse rate: 40 min-1 (0.67 Hz) and 40% volume expansion) that mimics a beating heart, which underscores its potential for future biomedical applications.


RSC Advances | 2013

Radical cations of end-capped tetrathienoacenes and their π-dimerization controlled by the nature of α-substituents and counterion concentration

Nur S. Rizalman; Cristina Capel Ferrón; Weijun Niu; Arthur Lawrence Wallace; Mingqian He; Russell Balster; John Lampkin; Víctor Hernández; Juan T. López Navarrete; M. Carmen Ruiz Delgado; František Hartl

Radical cations of a soluble rigid tetrathienoacene are capable of forming stable π-dimer dications at ambient temperature when the short backbone becomes extended with conjugated thiophene-2-yl substituents in the α-positions. On the other hand, simple attachment of methyl groups on the α-carbon of the external thiophen-2-yl rings proved sufficient to inhibit the dimerization. Stable radical cations were also exclusively formed for tetrathienoacene derivatives end-capped with bulky TIPS and phenyl substituents.


international workshop on active matrix flatpanel displays and devices | 2016

Development of organic semiconducting technology to realize low driving voltages

Mingqian He; Chao Wang; Wen-Ya Lee; Desheng Kong; Raphael Pfattner; Weijun Niu; James Robert Matthews; Arthur Lawrence Wallace; Zhenan Bao

Corning has developed three generations of polymeric organic semiconducting (OSC) materials, each with progressively improved electronic performance and processability. These materials possess excellent solubility, mobility and stability. Stanford University has developed a new polymer dielectric material based on a fluoroelastomer. Combined with Comings OSC polymers, this enables easy to fabricate transistors with high transconductance, low driving voltage and excellent device stability, even in water.


Chemistry of Materials | 2013

Scalable Synthesis of Fused Thiophene-Diketopyrrolopyrrole Semiconducting Polymers Processed from Nonchlorinated Solvents into High Performance Thin Film Transistors

James Robert Matthews; Weijun Niu; Adama Tandia; Arthur Lawrence Wallace; Jieyu Hu; Wen-Ya Lee; Gaurav Giri; Stefan C. B. Mannsfeld; Yingtao Xie; Shucheng Cai; Hon Hang Fong; Zhenan Bao; Mingqian He


Archive | 2013

FUSED THIOPHENES, METHODS OF MAKING FUSED THIOPHENES, AND USES THEREOF

Mingqian He; Jianfeng Li; James Robert Matthews; Weijun Niu; Arthur Lawrence Wallace


Archive | 2011

METHODS OF MAKING FUSED THIOPHENES

Mingqian He; Jieyu Hu; James Robert Matthews; Weijun Niu

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