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      • KCI등재

        The in-situ TEM isothermal aging evolution in a μ-Cu/NiAu/Sn/Cu solder joint for full intermetallic compounds interconnects of flexible electronics

        Jinhong Liu,Xinyi Jing,Jieshi Chen,Kyung‑Wook Paik,Peng He,Shuye Zhang 대한금속·재료학회 2024 ELECTRONIC MATERIALS LETTERS Vol.20 No.3

        A structure composed of various Cu–Ni–Sn IMCs would develop from severe Joule heat and excessive elemental diff usionunder high-density current in the solder joints of fl exible printed circuit (FPC). Herein, we fi rstly observed the evolution ofa Cu 6 Sn 5 + Cu 3 Sn/(Ni,Cu) 3 Sn 4 hybrid structure in a μ-Cu/NiAu/Sn/Cu solder joint for full intermetallic compounds (IMCs)interconnect of fl exible electronics under isothermal aging condition by in-situ TEM. The joint was divided into two regions,the IMC type on the right region remained unchanged with dwell time prolonging, while the ratio of Cu 3 Sn on the left regionat various dwell times fi tted the JMAK model when the kinetic parameter n picked 1.5, indicating that grain boundary diff usionwas the predominant mechanism for transporting Cu atoms. The nucleation and growth of Cu 3 Sn grains were fi nishedin the Cu 6 Sn 5 layer. The nucleation of a Cu 3 Sn grain with a spherical cap shape was fi rstly captured by HRTEM, and Cu 3 Sngrains underwent a transformation from columnar to equiaxed when the dwell time was increased, making the morphologyof Cu 3 Sn grains in a μ-Cu/NiAu/Sn/Cu solder joint signifi cantly diff erent from the situation in larger solder joints. This studyis expected to provide an in-depth study of the microstructural evolution of micro Cu/NiAu/Sn/Cu solder joints under agingcondition and thereby expand their application in the microelectronic industry.

      • KCI등재

        Television Viewing Time and Breast Cancer Incidence for Japanese Premenopausal and Postmenopausal Women: The JACC Study

        Jinhong Cao,Ehab Salah Eshak,Keyang Liu,Isao Muraki,Renzhe Cui,Hiroyasu Iso,Akiko Tamakoshi 대한암학회 2019 Cancer Research and Treatment Vol.51 No.4

        Purpose The evidence on effects of TV viewing time among premenopausal and postmenopausal women for breast cancer risk remains controversial and limited. Materials and Methods A prospective study encompassing 33,276 (17,568 premenopausal, and 15,708 postmenopausal) women aged 40-79 years in whom TV viewing time, menstrual, and reproductive histories were determined by a self-administered questionnaire. The follow-up was from 1988 to 2009 and hazard ratios (HRs) with 95% confidence intervals (CIs) of breast cancer incidence were calculated for longer TV viewing time in reference to shorter TV viewing time by Cox proportional hazard models. Results During 16.8-year median follow-up, we found positive associations between TV viewing time and breast cancer incidence with a borderline significant trend among total women and a significant trend among postmenopausal women. Among total women, the multivariable HRs (95% CIs) for risk of breast cancer in reference to < 1.5 hr/day of TV viewing time were 0.89 (0.59-1.34) for 1.5 to < 3.0 hr/day, 1.19 (0.82-1.74) for 3.0 to < 4.5 hr/day, and 1.45 (0.91-2.32) for  4.5 hr/day (p for trend=0.053) and among postmenopausal women, the corresponding risk estimates were 1.10 (0.42-2.88), 2.54 (1.11-5.80), and 2.37 (0.92-6.10) (p for trend=0.009), respectively. Conclusion Prolonged TV viewing time was associated with increased risk of breast cancer, especially among postmenopausal women.

      • KCI등재

        Efficient Immobilization of Enzymes on Amino Functionalized MIL-125-NH2 Metal Organic Framework

        Zichen Wang,Yang Liu,Jinhong Li,Guoqing Meng,Daoyu Zhu,Jiandong Cui,Shi Ru Jia 한국생물공학회 2022 Biotechnology and Bioprocess Engineering Vol.27 No.1

        As a series of metal organic framework (MOFs), materials of institute lavoisier frameworks (MILs) are expected to be excellent supports for enzyme immobilization due to their good water-stability and acid tolerance. However, enzyme loading on MIL-125-NH2 is very low due to small pore size and few amino groups on the surface of the MIL-125-NH2. In this work, catalase (CAT) was immobilized on the MIL-125-NH2 and amino functionalized MIL-125-NH2 by adsorption (CAT@MIL-125-NH2) and covalent binding (CAT@Amino MIL-125-NH2), respectively. Compared with the CAT@MIL-125-NH2 and free CAT, the CAT@Amino MIL-125-NH2 displayed high activity recovery, good pH stability, stability against denaturants, and thermostability. Furthermore, activity recovery of CAT@Amino MIL-125-NH2 was 56% higher than CAT@MIL-125-NH2. The CAT@Amino MIL-125-NH2 still retained 50% residual activity for 14 days at room temperature, whereas free CAT lost activity after storage for 1 day at the same storage conditions. Furthermore, the CAT@Amino MIL-125-NH2 maintained 62% of its initial activity after 4 consecutive uses, showing good reusability. The results showed that the amino functionalized MIL- 125-NH2 is an excellent carrier of enzyme immobilization.

      • KCI등재

        Modeling and Simulation of Scheduling Medical Materials Using Graph Model for Complex Rescue

        Ming Lv,Jingchen Zheng,Qingying Tong,Jinhong Chen,Haoting Liu,Yun Gao 한국정보처리학회 2017 Journal of information processing systems Vol.13 No.5

        A new medical materials scheduling system and its modeling method for the complex rescue are presented. Different from other similar system, first both the BeiDou Satellite Communication System (BSCS) and theSpecial Fiber-optic Communication Network (SFCN) are used to collect the rescue requirements and thelocation information of disaster areas. Then all these messages will be displayed in a special medical softwareterminal. After that the bipartite graph models are utilized to compute the optimal scheduling of medicalmaterials. Finally, all these results will be transmitted back by the BSCS and the SFCN again to implement afast guidance of medical rescue. The sole drug scheduling issue, the multiple drugs scheduling issue, and thebackup-scheme selection issue are all utilized: the Kuhn-Munkres algorithm is used to realize the optimalmatching of sole drug scheduling issue, the spectral clustering-based method is employed to calculate theoptimal distribution of multiple drugs scheduling issue, and the similarity metric of neighboring matrix isutilized to realize the estimation of backup-scheme selection issue of medical materials. Many simulationanalysis experiments and applications have proved the correctness of proposed technique and system.

      • SCOPUSKCI등재

        Modeling and Simulation of Scheduling Medical Materials Using Graph Model for Complex Rescue

        Lv, Ming,Zheng, Jingchen,Tong, Qingying,Chen, Jinhong,Liu, Haoting,Gao, Yun Korea Information Processing Society 2017 Journal of information processing systems Vol.13 No.5

        A new medical materials scheduling system and its modeling method for the complex rescue are presented. Different from other similar system, first both the BeiDou Satellite Communication System (BSCS) and the Special Fiber-optic Communication Network (SFCN) are used to collect the rescue requirements and the location information of disaster areas. Then all these messages will be displayed in a special medical software terminal. After that the bipartite graph models are utilized to compute the optimal scheduling of medical materials. Finally, all these results will be transmitted back by the BSCS and the SFCN again to implement a fast guidance of medical rescue. The sole drug scheduling issue, the multiple drugs scheduling issue, and the backup-scheme selection issue are all utilized: the Kuhn-Munkres algorithm is used to realize the optimal matching of sole drug scheduling issue, the spectral clustering-based method is employed to calculate the optimal distribution of multiple drugs scheduling issue, and the similarity metric of neighboring matrix is utilized to realize the estimation of backup-scheme selection issue of medical materials. Many simulation analysis experiments and applications have proved the correctness of proposed technique and system.

      • SCIESCOPUSKCI등재

        Dynamical Expression of MicroRNA-127-3p in Proliferating and Differentiating C2C12 Cells

        Li, Jie,Wang, Gaofu,Jiang, Jing,Zhou, Peng,Liu, Liangjia,Zhao, Jinhong,Wang, Lin,Huang, Yongfu,Ma, Youji,Ren, Hangxing Asian Australasian Association of Animal Productio 2016 Animal Bioscience Vol.29 No.12

        MicroRNAs (miRNAs) are highly conserved, short non-coding RNAs that regulate gene expression at the posttranscriptional level. Although many miRNAs are identified in muscles and muscle cells, their individual roles are still not fully understood. In the present study, we investigated a muscle highly-expressed miRNA, miR-127-3p, in C2C12 myoblasts and tissues of goats with different muscle phenotypes (Boer vs Wushan black goats). Our results demonstrated that i) miR-127-3p was extensively expressed in tissues of goats; ii) miR-127-3p was higher expressed in muscle, spleen, heart, and skin in the muscular goats (Boer goats) than the control (Wushan black goats). Then we further characterized the dynamical expression of miR-127-3p, MyoD, MyoG, Myf5, Mef2c, and Myosin in the proliferating and differentiating C2C12 myoblasts at day of 0, 1, 3, 5, and 7 in culture mediums. Especially, we found that miR-127-3p was significantly higher expressed in the proliferating than differentiating cells. Our findings suggest that miR-127-3p probably plays roles in the proliferation and differentiation of myoblasts, which further underlies regulation of muscle phenotype in goats.

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