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Jiaguo Yu

Researcher at Wuhan University of Technology

Publications -  881
Citations -  146574

Jiaguo Yu is an academic researcher from Wuhan University of Technology. The author has contributed to research in topics: Photocatalysis & Catalysis. The author has an hindex of 178, co-authored 730 publications receiving 113300 citations. Previous affiliations of Jiaguo Yu include King Abdulaziz University & China University of Geosciences (Wuhan).

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Hydroxyl-enriched highly crystalline TiO2 suspensible photocatalyst: facile synthesis and superior H2-generation activity.

TL;DR: In this paper, a hydroxyl-enriched highly crystalline TiO2 suspensible photocatalyst was synthesized via a facile ethanol-controlled hydrolysis and following an in situ crystallization method.
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Synthesis and characterization of microwave dielectric BaTi4O9 ceramics via EDTA–citrate gel process

TL;DR: The thermal decomposition of the precursor was studied by thermal analysis (DTA/TG/DTG), XRD, FTIR and SEM as discussed by the authors, and morphology and the dielectric properties of the BaTi 4 O 9 ceramics, fully densified at 1150 °C for 2 h, were also investigated.
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Laser operation at high repetition rate of 100 kHz in Nd:GdVO4 under 879 nm diode-laser pumping

TL;DR: In this paper, an efficient continuous-wave and acousto-optically Q-switched laser emission in Nd:GdVO4 crystal, end-pumped at 879 nm into the laser emitting level, is reported, corresponding to the slope efficiency of 74.6% in absorbed power.
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A novel approach for the synthesis of monodispersed porous silica microspheres with high surface area

TL;DR: In this paper, the alkyl chain length of 1-alkylamine and calcination temperature have an obvious influence on the particle size, morphology, specific surface area and pore structure of the as-prepared silica powder.
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Real-time Demonstration of 125.516 Gbps Transparent Fiber-THz-Fiber 2 × 2 MIMO Transmission at 360 GHz - 430 GHz based on Photonic Up-/Down-Conversion

TL;DR: In this article , the first real-time transparent fiber-THz-fiber 2 × 2 MIMO transmission system with a record line rate of 125.516 Gbps at 360-430 GHz based on photonic remote heterodyning, hybrid optoelectronic down-conversion, and commercial digital coherent modules was demonstrated.