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| 1 | Efficacy of open reduction and internal fixation with a miniplate and hollow screw in the treatment of Lisfranc injury显示文摘 | Baoliang Li Wenbo Zhao Lei Liu Fuguo Huang Guanglin Wang Yue Fang | 2015 | Chinese Journal of Traumatology2015,18,1: | 17 |
| 2 | One-step uniform growth of magnesium hydride nanoparticles on graphene显示文摘A simple solvent-free method to synthesize MgH_2 nanoparticles(MgH_2NPs) uniformly grown on graphene nanosheets(GNs) has been reported in this paper. Based on the formation of MgH_2 by di-n-butylmagnesium((C_4H_9)_2Mg) thermal decomposition under hydrogen pressure, the GNs were added as matrix to hinder the agglomeration and growing of MgH_2NPs. The fabricated MgH_2/GNs nanocomposites, in which MgH_2 NPs were homogenously growing in the graphene matrix, have been synthesized by the favorable adsorption energy between(C_4H_9)_2Mg and GNs. Resulting from the one-step solvent-free route, the generated MgH_2 NPs shows high hydrogen capacity and steady hydriding and dehydriding properties, without the interference of the synthetic medium. At the same time, the size of the fabricated MgH_2NPs can be controlled by adjusting the mass ratio of MgH_2 to graphene, the various hydrogen pressure and temperature. Attributed to smaller size effect, well uniform distribution of high density MgH_2NPs, and the agglomeration blocking ability of graphene,the MgH_2/GNs-40 wt% exhibits the favorite hydrogen storage performance. | Yuqin Huang Guanglin Xia Jie Chen Baoping Zhang Qian Li Xuebin Yu | 2017 | Progress in Natural Science:Materials International2017,27,1: | 5 |
| 3 | Magnesium hydride nanoparticles anchored on MXene sheets as high capacity anode for lithium-ion batteries显示文摘Magnesium hydride, with high specific capacity, favorable voltage profile and low voltage hysteresis properties, is regarded as a promising anode for lithium storage. However, the rapid fading of capacity caused by huge volume change, low electron/ion conduction, and spontaneous agglomeration of active materials during cycling greatly limit its practical application in lithium-ion batteries. Herein, we report the synthesis of monodisperse MgH2 nanoparticles with an average particle size of <20 nm homogeneously anchored on Ti3C2 MXene sheets by bottom-up self-assembly strategy. The unique nanoarchitectures are able to efficiently enhance the lithium insertion/extraction kinetics, accelerate the electron/lithium ion transfer and buffer the strain of volume changes. More importantly, the formed F–Mg bounding between MgH2 and MXene could avoid the shedding of MgH2 nanoparticles to electrolyte during cycling, which significantly enhance the capacity, cyclability, and rate performance of magnesium hydride. Moreover, due to the high density of MXene and the synergistic effect between the MgH2 and MXene matrix, the MgH2/MXene composite with 60 wt% MgH2 delivers a superior volumetric capacity of 1092.9 mAh cm−3 at a current density of 2000 mA g^(−1) after 1000 cycles. These results highlight the great promising of MgH2/MXene composite for high performance lithium-ion batteries. | Shulin Zhong Shunlong Ju Yifei Shao Wei Chen Tengfei Zhang Yuqin Huang Hongyu Zhang Guanglin Xia Xuebin Yu | 2021 | Journal of Energy Chemistry2021,30,11: | 1 |
| 4 | An Antiphishing Strategy Based on Visual Simulary Assessment显示文摘 | Deng XiaoTie Huang GuangLin | 2006 | City University of Hong Kong Intemet computing 3 4-20062006,,: | 1 |
| 5 | Graft polymerization on magnesium oxide surface显示文摘 | Jiang Bo Huang Guanglin | 2004 | J Rad Phys Chem2004,69,5: | 1 |
| 6 | Transplantation Therapy of Cats with Chronic Renal Failure显示文摘Dialysis therapy is not a radical cure of chronic renal failure in cats,while renal transplantation is the cure method.Renal transplanta-tion requires rigorous examination of donor and receptor,and the procedure is strictly sterile.The main points of renal transplantation are:renal artery and vein sutured to abdominal aorta and posterior vena cava,respectively;ureter sutured to bladder;minimizing the time of thermal ischemia.Cats should be given immunosuppressant before the operation,and the drug should be administered throughout the life.Various indicators should be monitored regularly to prevent the occurrence of immunological rejection. | Zuo Kejing Huang Mian Tang Xiaojun Chen Xuanjiao Wen Yan Chen Tanzipeng Sa Jiaqi Liang Yuzhen Zhang Malong Peng Shiming Zhi Guanglin Wu Qirui | 2018 | Animal Husbandry and Feed Science2018,10,2: | 1 |
| 7 | A method for evaluating high energy laser beam quality 显示文摘 | Yunping Wang Jianyu Huang Guanglin Qiao | 2001 | Journal of Optoelectronics Laser2001,12,: | 1 |
| 8 | Feasibility of terahertz spectroscopy for hybrid purity verification of rice seeds显示文摘The purity of hybrid rice seeds reflects the typical consistency of seed varieties in characteristics.The accuracy and reliability of seed purity detecting are of great significance to ensure the quality of seeds.In this study,the feasibility of identifying the purity of hybrid rice seeds,Xinong 1A/89,by terahertz(THz)time-domain spectroscopy system combined with chemometrics was explored.Three quantitative identification models for testing the purity of Xinong 1A/89 hybrid rice seed were developed and compared by THz absorption spectroscopy with extreme learning algorithm(ELM),Principal cComponent Regression(PCR)and Partial Least Squares Regression(PLSR).Experimental results showed that comparing with classical PLSR and PCR models,ELM presents a better feasibility and stability.For the testing set,the quantitative prediction result of ELM(ELoo=2.005×10^(-5),R^(2)=96.75%)is significantly better than those of PCR(ELoo=7.346×10^(-5),R^(2)=88.10%)and PLSR(ELoo=8.007×10^(-5),R^(2)=87.03%).The results highlight the feasibility of THz spectroscopy combined with ELM as an efficient and reliable method for verification of hybrid rice seeds. | Yaling Yang Shengling Zhou Jie Song Jie Huang Guanglin Li Shiping Zhu | 2018 | International Journal of Agricultural and Biological Engineering2018,11,5: | 1 |
| 9 | The role of bacteria and its derived biomaterials in cancer radiotherapy显示文摘Bacteria-mediated anti-tumor therapy has received widespread attention due to its natural tumor-targeting ability and specific immune-activation characteristics.It has made significant progress in breaking the limitations of monotherapy and effectively eradicating tumors,especially when combined with traditional therapy,such as radiotherapy.According to their different biological characteristics,bacteria and their derivatives can not only improve the sensitivity of tumor radiotherapy but also protect normal tissues.Moreover,genetically engineered bacteria and bacteria-based biomaterials have further expanded the scope of their applications in radiotherapy.In this review,we have summarized relevant researches on the application of bacteria and its derivatives in radiotherapy in recent years,expounding that the bacteria,bacterial derivatives and bacteria-based biomaterials can not only directly enhance radiotherapy but also improve the anti-tumor effect by improving the tumor microenvironment(TME)and immune effects.Furthermore,some probiotics can also protect normal tissues and organs such as intestines from radiation via anti-inflammatory,anti-oxidation and apoptosis inhibition.In conclusion,the prospect of bacteria in radiotherapy will be very extensive,but its biological safety and mechanism need to be further evaluated and studied. | Yu Zhang Ruizhe Huang Yunchun Jiang Wenhao Shen Hailong Pei Guanglin Wang Pei Pei Kai Yang | 2023 | Acta Pharmaceutica Sinica B2023,13,10: | 0 |
| 10 | Facile preparation of^(177)Lu-microspheres for hepatocellular carcinoma radioisotope therapy显示文摘As one of the most common cancers in the world,hepatocellular carcinoma(HCC)has become a major threat to human health.Radioembolization is a first-line option for the treatment of HCC,especially when other conventional treatments fail or there exist some relative contraindications.Herein,we developed a facile and efficient method for preparing ^(177)Lu-microspheres potentially useful for precise radioembolization therapy of HCC.The radiolabeling efficiency of ^(177)Lu-microspheres was as high as 96.8%±0.5%,and the radiolabeling process did not alter the morphology of the mother microspheres.The SPECT/CT studies enabled by the unique emissions of ^(177)Lu suggested that almost no ^(177)Lu ion loaded by the microspheres was released over more than 32 d in vivo,which led to remarkable inhibition effect on the growth of HepG2 tumors subcutaneously transplanted in mice.The current approach may thus offer promising ^(177)Lu-microspheres for clinical radioembolization of HCC. | Manran Wu Kexin Shi Ruizhe Huang Chunyi Liu Lingling Yin Weipeng Yong Jing Sun Guanglin Wang Zhiyuan Zhong Mingyuan Gao | 2022 | Chinese Chemical Letters2022,33,7: | 0 |
| 11 | Nerve function restoration following targeted muscle reinnervation after varying delayed periods显示文摘Targeted muscle reinnervation has been proposed for reconstruction of neuromuscular function in amputees.However,it is unknown whether performing delayed targeted muscle reinnervation after nerve injury will affect restoration of function.In this rat nerve injury study,the median and musculocutaneous nerves of the forelimb were transected.The proximal median nerve stump was sutured to the distal musculocutaneous nerve stump immediately and 2 and 4 weeks after surgery to reinnervate the biceps brachii.After targeted muscle reinnervation,intramuscular myoelectric signals from the biceps brachii were recorded.Signal amplitude gradually increased with time.Biceps brachii myoelectric signals and muscle fiber morphology and grooming behavior did not significantly differ among rats subjected to delayed target muscle innervation for different periods.Targeted muscle reinnervation delayed for 4 weeks can acquire the same nerve function restoration effect as that of immediate reinnervation. | Yuanheng Li Jiangping Huang Yuling Chen Shanshan Zhu Zhen Huang Lin Yang Guanglin Li | 2023 | Neural Regeneration Research2023,18,12: | 0 |
| 12 | Niobium fluoride-modified hydrogen evolution reaction of magnesium borohydride diammoniate显示文摘Metal borohydride ammoniates have become one of the most promising hydrogen storage materials due to their ultrahigh capacities.However,their application is still restricted by the high temperature of hydrogen desorption and the release of ammonia.Here,to promote the dehydrogenation evolution and suppress the ammonia release,different amounts of NbF 5 were introduced into Mg(BH4)2·2NH3.Compared to the pure Mg(BH_(4))_(2)·2NH_(3),the Mg(BH_(4))_(2)·2NH_(3)-NbF_(5) composites exhibit lower onset dehydriding temperatures(53–57℃)and higher dehydriding capacities(5.6 wt.%–8.2 wt.%)at below 200℃,with the complete suppression of ammonia.In addition,7.4 wt.%H_(2) could be released from Mg(BH_(4))_(2)·2NH_(3)–5 mol%NbF5 composite at 200℃ within 20 min and the apparent activation energy is calculated to be 60.28 kJ mol^(-1),which is much lower than that of pure Mg(BH_(4))_(2)·2NH_(3)(92.04 kJ mol^(-1)).Mg(BH_(4))_(2)·2NH_(3) should mechanochemically react with NbF5,forming dual-metal(Mg,Nb)borohydride ammoniate and spherical MgF2.The introduction of electronegative Nb cation results in-situ formation of(Mg,Nb)borohydride ammoniate towards a lower dehydrogenation temperature and a higher hydrogen release purity.The increased phase boundaries among the Mg(BH_(4))_(2)·2NH_(3),dual-metal(Mg,Nb)borohydride ammoniate,and MgF2 phases further facilitate the hydrogen diffusion during the dehydrogenation of the composites. | Yujie Lv Bao Zhang Haixiang Huang Bogu Liu Wei Lv Jianguang Yuan Guanglin Xia Xuebin Yu Dalin Sun Ying Wu | 2023 | Journal of Materials Science & Technology2023,,25: | 0 |