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| 1 | Perfection of Perovskite Grain Boundary Passivation by Rhodium Incorporation for Efficient and Stable Solar Cells显示文摘Organic cation and halide anion defects are omnipresent in the perovskite films,which will destroy perovskite electronic structure and downgrade the properties of devices.Defect passivation in halide perovskites is crucial to the application of solar cells.Herein,tiny amounts of trivalent rhodium ion incorporation can help the nucleation of perovskite grain and passivate the defects in the grain boundaries,which can improve efficiency and stability of perovskite solar cells.Through first-principle calculations,rhodium ion incorporation into the perovskite structure can induce ordered arrangement and tune bandgap.In experiment,rhodium ion incorporation with perovskite can contribute to preparing larger crystalline and uniform film,reducing trap-state density and enlarging charge carrier lifetime.After optimizing the content of 1% rhodium,the devices achieved an efficiency up to 20.71% without obvious hysteresis,from 19.09% of that pristine perovskite.In addition,the unencapsulated solar cells maintain 92% of its initial efficiency after 500 h in dry air.This work highlights the advantages of trivalent rhodium ion incorporation in the characteristics of perovskite solar cells,which will promote the future industrial application. | Wei Liu Nanjing Liu Shilei Ji Hongfeng Hua Yuhui Ma Ruiyuan Hu Jian Zhang Liang Chu Xing’ao Li Wei Huang | 2020 | Nano-Micro Letters2020,12,9: | 4 |
| 2 | Preparation, evaluation, and in vitro release study of O-carboxymethyl chitosan nanoparticles loaded with gentamicin and salicylic acid显示文摘 | Ji Jingou Hao Shilei Dong Jin | 2012 | Journal of Applied Polymer Science2012,123,16: | 1 |
| 3 | Coupled attitude-vibration analysis of an E-sail using absolute nodal coordinate formulation显示文摘In this study,the effects of solar wind on an electric sail(E-sail)are modeled and analyzed using an absolute nodal coordinate formulation(ANCF).First,the thrust of the charged metal tether that makes up the E-sail was analyzed and a model was established.Numerical simulations of a single metal tether were performed.Then,an overall E-sail model was established using the connection matrix,and E-sails subjected to different angular velocities were compared.Simulation results of the ANCF model and a dumbbell model were compared at different angular velocities.The results confirm that with a relatively high angular velocity,the flexible metal chain can be approximately regarded as a rigid body.However,with a small angular velocity,the flexibility of the metal chain cannot be ignored. | Ce Zhao Mingying Huo Ji Qi Shilei Cao Dongfang Zhu Lujun Sun Hongli Sun Naiming Qi | 2020 | Astrodynamics2020,4,3: | 0 |
| 4 | Nano Calcium-Deficient Hydroxyapatite/O-carboxymethyl Chitosan-CaCl_(2) Microspheres Loadedwith RheinforBone Defect Repair显示文摘Glutaraldehyde(GA),the most widely used crosslinking agent for biomaterials,is cytotoxic.CaCl_(2) is of particular interest due to its non-toxic nature.Rhein can chelate Ca^(2+)and promote bone growth.Here we reported a novel nano calcium-deficient hydroxyapatite/O-carboxymethyl chitosan-CaCl_(2) microspheres loaded with rhein(RH-nCDHA/OCMC-CaCl_(2) microspheres)using CaCl_(2) as crosslinking agent for bone defect repair.The obtained microspheres were characterized by X-ray diffraction(XRD),scanning electron microscopy(SEM),thermogravimetric analysis(TG)and Fourier transform infrared spectroscopy(FT-IR).The surface of the obtained microspheres is rough with quite a few voids.The nano calcium-deficient hydroxyapatite(nCDHA)accounts for about 70% of the total weight of the microspheres,which is equivalent to the proportion of inorganic substances in human bones.A high encapsulation efficiency(EE)and loading capacity(LC)of the microspheres loaded with rhein was 90.20±0.60% and 11.03±0.30%,respectively.For microspheres using CaCl_(2) in simulated body fluid(SBF)after 14 days,the drug released continuously and bone-like apatite formed like layer.The cells on the surface of the RH-nCDHA/OCMC-CaCl_(2) microspheres grew better comparing with nCDHA/OCMC-GA microspheres and the skull defects of rats after landfill can be almost repaired after 8 weeks,which revealed the potential of the microspheres for bone repair. | Zhenzhen Tian Yuanyuan Guo Xiuying Yang Kebing Guo Jingou Ji Shilei Hao | 2022 | Journal of Bionic Engineering2022,19,4: | 0 |
| 5 | Fabrication of ulcer-adhesive oral keratin hydrogel for gastric ulcer healing in a rat显示文摘Hydrogel has been used for in suit gastric ulcer therapy by stopping bleeding,separating from ulcer from gastric fluids and providing extracellular matrix scaffold for tissue regeneration,however,this treatment guided with endoscopic catheter in most cases.Here,we developed an oral keratin hydrogel to accelerate the ulcer healing without endoscopic guidance,which can specially adhere to the ulcer because of the high-viscosity gel formation on the wound surface in vivo.Approximately 50%of the ulcer-adhesive keratin hydrogel can resident in ethanol-treated rat stomach within 12 h,while approximately 18%of them maintained in health rat stomach in the same amount of time.Furthermore,Keratin hydrogels accelerated the ethanol-induced gastric ulcer healing by stopping the bleeding,preventing the epithelium cells from gastric acid damage,suppressing inflammation and promoting re-epithelization.The oral administration of keratin hydrogel in gastric ulcer treatment can enhance the patient compliance and reduce the gastroscopy complications.Our research findings reveal a promising biomaterial-based approach for treating gastrointestinal ulcers. | Zhongjun Cheng Rui Qing Shilei Hao Yi Ding Haimeng Yin GuoDong Zha Xiaoliang Chen Jingou Ji Bochu Wang | 2021 | Regenerative Biomaterials2021,8,2: | 0 |