个人信息

姓名:邓新华

国籍:中国

性别:

职称:教授

学位:博士

电子邮件:dengxinhua@ncu.edu.cn

所在单位:物理与材料学院

办公地址:理科楼B724-1

个人信息

邓新华博士,美国加州大学伯克利分校物理系博士后,南昌大学物理系教授博士生导师江西省中青年骨干教师教育部学位中心特聘专家,河北、宁夏、安徽、山西等省科技高新技术领域重点研发计划项目关键核心技术评审专家。美国光学学会会员,国际SCI光学权威期刊Opt. Lett.》、《Opt. Express》及《Opt. Mater. Express》及国内《科学通报》和《物理学报》特邀审稿人,并荣获2020年和2021年《物理学报》优秀审稿人荣誉称号,IEEE光电工程与信息科学国际会议程序委员会委员毫米波国家重点实验室和光电材料与技术国际重点实验室客座研究员现主要从事微纳光学、石墨烯及类石墨烯二维材料光学特性、太阳能光伏、LED、光子晶体、特异材料、超构表面及非线性光学的基础和应用研究。

先后主持参与省级、国家级项目10多项,省科技厅鉴定的科技成果2项。主持完成的项目光在非均匀特异材料中的传播与调控荣获江西省高校科技成果二等奖主持完成的项目新型人工微结构电磁材料对光的操控及其应用研究荣获江西省自然科学奖三等奖近年来在国内外刊物和会议上发表论文70多篇,其中SCI 收录60多篇;分别刊登在《Phys. Rev. A》、《Optics Letters》、《Optics Express》、《New J. Phys.》、Chinese Journal of Physics》、《J. Appl. Phys.》、《Chinese Physics Letters》、《物理学报》和《科学通报》等国内外权威刊物上。


教育经历

[1] 200509-200806 南昌大学 博士研究生

[2] 200109-200406 南昌大学 硕士研究生

[3] 201204-201304 美国加州大学伯克利分校 博士后

[4] 200109-200406 南昌大学 硕士研究生

[5] *-200806 南昌大学 博士研究生

工作履历

[1] 200407-* 南昌大学物理与材料学院 南昌大学物理与材料学院

[2] 201204-201304 美国加州大学伯克利分校 美国加州大学伯克利分校

科研项目

基于复杂人工原子的纳米复合材料电磁超表 面耦合机理的理论、模拟和实验研究

基于石墨烯的新型复合结构特异材料(metamaterials)实现对THz波的全新操控机制研究

基于石墨烯的可调谐新型特异材料( metamaterials )对THz波传播和调控研究

新型人工电磁材料的对称性和拓扑性质调控光的研究

新型人工电磁材料对光孤子的操控研究

特异材料光子晶体中光辐射与传播性质研究及应用

新型人工电磁特异材料太赫兹表面等离子体波的传播与调控研究

科研成果

先后主持参与省级、国家级项目10多项,省科技厅鉴定的科技成果2项。主持完成的项目光在非均匀特异材料中的传播与调控荣获江西省高校科技成果二等奖主持完成的项目新型人工微结构电磁材料对光的操控及其应用研究荣获江西省自然科学奖三等奖近年来在国内外刊物和会议上发表论文70多篇,其中SCI 收录60多篇;分别刊登在《Phys. Rev. A》、《Optics Letters》、《Optics Express》、《New J. Phys.》、Chinese Journal of Physics》、《J. Appl. Phys.》、《Chinese Physics Letters》、《物理学报》和《科学通报》等国内外权威刊物上。

近期发表的代表性论文:

1.      Jiaqi Geng, Xin-Hua Deng*, Zhipeng Xiong, Jiapeng Gao, Binbin Song. Innovative design to achieve multi-band electromagnetic wave stealth. Optics Letters, 2024, 49(18): 5328-5331.SCI   TOP期刊

2.      Liangyu Tao, Xin-Hua Deng*, Pingsheng Zhang, Ming Lu, and Jiren Yuan. Multifunctional graphene metamaterials based on polarization-insensitive plasmon-induced transparency. Optics Express, 2024, 32(2): 2097–2105. SCI   TOP期刊

3.      Jiaqi Geng, Xin-Hua Deng*, Zhipeng Xiong, Jiapeng Gao, Binbin Song, Jiren yuan. Ultra-wideband terahertz absorber with switchable multiple modes based on graphene and vanadium dioxide metamaterials. Chinese Journal of Physics, 2024, 92: 1312-1324 (Invited Feature article)SCIIF 5.0  

4.      Jiaqi Geng, Xin-Hua Deng*, Zhipeng Xiong, Jiapeng Gao, Binbin Song, YaoKun Lou. A metasurface capable of simultaneous stealth across multiple electromagnetic wave bands and its design concept. Composites Communications, 2025, 55: 102328 SCI)一 IF 8.0

5.      Fumin Guo, Xin-Hua Deng*, Kaipeng Qin, Pingsheng Zhang, Yingming Song, Huigen Xie, and Jiren Yuan. Ultra-broadband vanadium dioxide absorber with dynamic modulation in the terahertz band. Optics Communications, 2024, 560(6) 130482SCI

6.      Jiapeng Gao, Xin-Hua Deng*, Jiaqi Geng, Zhipeng Xiong, Binbin Song. A vanadium dioxide-based THz metasurface for dual-function switching between wideband absorption and polarization conversion. Journal of Electronic Materials, 2024, 53: 8180–8189.SCI

7.      Yaokun Lou, Xin-Hua Deng*, Jiaqi Geng, Siyuan Zhu, Yansong Liu, Yuqiang Zhang, Yanxu Bao, Ping Hu. Design of metasurface structures compatible with multiple detection methods for stealth applications. Physics Letters A, 2025, 544(5): 130487SCI

8.      Zhipeng Xiong, Xin-Hua Deng*, Jiaqi Geng, Jiapeng Gao, Binbin Song. Tunable multifunctional metasurface based on phase-change materials and graphene. Journal of Electronic Materials, 2025 DIO:10.1007/s11664-025-11947-y

9.      Yuqiang Zhang, Xin-Hua Deng*, Jiaqi Geng, Zhipeng Xiong, Ping Hu. Terahertz ultra-wideband metamaterial absorber based on superposition optimization. Materials Research Bulletin, 2025 已接受待出版.

10.  Yingming Song, Xin-Hua Deng*, Pingsheng Zhang, Fumin Guo, and Kaipeng Qin. Graphene-based metamaterial absorber with perfect multi-band absorption. Journal of Electronic Materials, 2024, 53: 4049–4058.SCI

11.  Kaipeng Qin, Xin-Hua Deng*, Pingsheng Zhang, Fumin Guo, Yingming Song, Liangyu Tao, and Jiren Yuan. Tunable multiband THz perfect absorber due to the strong coupling of distributed Bragg reflector cavity mode and Tamm plasma polaritons modes base on MoS2 and graphene. Optics Communications, 2024, 550(1): 129947.SCI

12.  Ming Lu, Xin-Hua Deng*, and Ping Hu. Dual-band InSb metamaterial absorber based on temperature and magnetic field control. MRS Advances, 2024, 9(14): 1121–1127SCI

13.  P. Li, P. S. Zhang, Xin-Hua Deng*, and J. R. Yuan. Multiband tunable metamaterial perfect absorber based on a metal-graphene multilayer structure. Indian Journal of Physics, 2025, 99(2): 395–401SCI

14.  Pingsheng Zhang, Xin-Hua Deng*, Liangyu Tao, Peng Li, Ming Lu, Fumin Guo, Yingming Song, and Jiren Yuan. Broadband actively tunable metamaterial absorber based on vanadium dioxide and Fabry-Perot cavity. Optical Materials, 2023, 138: 113716. SCI

15.  Pingsheng Zhang, Kaipeng Qin, Xin-Hua Deng* Hongfei Liu, and Jiren Yuan. Tunable ultra-wideband polarization insensitivity wide-angle perfect THz absorber based on metamaterials containing vanadium dioxide. Applied Physics A, 2023, 129(9): 644.SCI

16.  Hongfei Liu, Pingsheng Zhang, Yuxiu Zhou, Xin-Hua Deng*, Jiren Yuan. Tunable multichannel THz perfect absorption using graphene-based Fabry Perot resonator. Optical and Quantum Electronics, 2023, 55(9): 980.SCI

17.  Jiaming Dong, Xin-Hua Deng*, Pingsheng Zhang, and Jiren Yuan. Multi-channel THz perfect absorber using graphene-based Fibonacci photonic crystals. Journal of the Optical Society of America B, 2023, 40 (3): B28-B34.SCIWOS:000953158600001

18.  Pingsheng Zhang, Xin-Hua Deng*, Hongfei Liu, and Jiren Yuan. Tunable bidirectional perfect THz absorber realized by graphene‑based one‑dimensional photonic crystals. Optical and Quantum Electronics, 2023, 55(3): 255.SCIWOS:000911322900004

19.  Jian-Xin Wu, Xin-Hua Deng*, Hong-Fei Liu, and Jiren Yuan. Perfect terahertz absorber with dynamically tunable peak and bandwidth using graphene-based metamaterials. Journal of the Optical Society of America B, 2022, 39(9): 2313-2318.SCIWOS:000897307400005

20.  Pingsheng Zhang, Xin-Hua Deng*, Hongfei Liu, Jiaming Dong, and Jiren Yuan. Tunable enhanced THz absorption in Fibonacci photonic crystals with graphene. European Physical Journal D, 2022, 76(9):163.SCIWOS:000854492500001

21.  Shiqi Liu, Jiren Yuan a, Junshi Wang, Xinhua Deng, Haibin Huang, Lang Zhou, Preparation and characterization of vanadium-implanted silicon for intermediate band solar cell applications. Optical Materials, 2022, 133: 112987. SCIWOS:000876695200002

22.  Hong-Fei Liu, Jian-Xin Wu, Ji-Ren Yuan, and Xin-Hua Deng*. Dynamically tunable perfect THz absorption in graphene-based metamaterial structures [J]. Europhysics Letters, 2021, 134(5): 57003.SCI

23.  Jiawen Chen, Jiadong Hu, Xin-Hua Deng*, Jiren Yuan, Tong-Biao Wang. Enhanced THz absorption of graphene cavity-based electromagnetic metamaterial structures [J]. Journal of Modern Optics, 2020, 67(6): 547-551. SCI

24.  Jiren Yuan, Haibin Huang, Xinhua Deng, Cuicui Liu, Huaying Chen, Xiling He, Chao Gao, Zhihao Yue, Yong Zhao, Lang Zhou. Preparation and characterization of the Si:Co layer for intermediate band solar cell applications [J]. Optical Materials, 2018, 77(3): 34-38SCI

25.  Yun-Ben Wu, Wen Yang, Tong-Biao Wang, Xin-Hua Deng, Jiang-Tao Liu. Broadband perfect light trapping in the thinnest monolayer graphene-MoS2 photovoltaic cell: the new application of spectrum-splitting structure. Scientific Reports, 2016, 6: 20955 SCI 一区

26.  Xin-Hua Deng, Jiang-Tao Liu, Jiren Yuan, Tong-Biao Wang, and Nian-Hua Liu. Tunable THz absorption in graphene-based heterostructures [J]. Optics Express, 2014, 22(24): 30177–30183. SCI一区

27.  Jiang-Tao Liu, Fu-Hai Su, Xin-Hua Deng, and Hai Wang. Proposal for the momentum-resolved and time-resolved optical measurement of the current distribution in semiconductors [J]. Optics Express, 2012, 20(11): 11694–11699. SCI)一区

28.  Xin-Hua Deng, Jiang-Tao Liu, Ji-Ren Yuan, Qing-Hua Liao and Nian-Hua Liu. A new transfer matrix method to calculate the optical absorption of graphene at any position in stratified media [J]. Europhysics Letters, 2015, 109(2): 27002 SCI 二区

29.  Jiren Yuan, Haibin Huang, Xinhua Deng, Zhihao Yue, Yuping He, Naigen Zhou, and Lang Zhou. Photoemission cross section: A critical parameter in the impurity photovoltaic effect [J]. Chin. Phys. B, 2017, 26(1): 018503 SCI

30.  Jiren Yuan, Haibin Huang, Xinhua Deng, Mingang Gong, Cuicui Liu, Zhihao Yue, Chao Gao, Naigen Zhou, Lang Zhou. Intermediate band materials obtained by rapid thermal process of Co-implanted silicon [J]. Materials Letters, 2017, 209: 522–524SCI

31.  Jiang-Tao Liu, Xin-Hua Deng, Wen Yang and Jun Li. Perfect light trapping in nanoscale thickness semiconductor films with a resonant back reflector and spectrum-splitting structures [J]. Phys. Chem. Chem. Phys., 2015, 17(5): 3303-3308 SCI(IF 4.2)  二区

32.  Jie-Hui Huang, Zhang-Yang Chen, Tian-Bao Yu, Xin-Hua Deng, Jiang-Tao Liu, and Nian-Hua Liu. Dynamics of three-qubit entanglement in photonic crystals [J]. Physical Review A, 2012, 85(1): 014301-1-5. SCI)二区

33.  Jang-Tao Liu, Fu-Hai Su, Xin-Hua Deng and Hai Wang. Direct map of the scattering current in real time by using the two-color optical coherence absorption spectrum [J]. Europhysics Letters, 2012, 99(6): 67008. SCI)二区

34.  Jiang-Tao Liu, Fu-Hai Su, Hai Wang, and Xin-Hua Deng. Effects of optical fields on the tunneling time of chiral electrons in grapheme [J]. New Journal of Physics, 2012, 14(1): 013012-1-7.  SCI)二区

35.  J. T. Liu, F. H. Su, H. Wang and X. H. Deng. The influence of the optical Stark effect on chiral tunneling in grapheme [J]. Europhysics Letters, 2011, 95(2): 24003-p1-p5. SCI)二区

36.  X. H. Deng, L. G. Fang, J. T. Liu, L. E. Zou, N. H. Liu. Multichannel filtering properties of photonic crystals containing single-negative materials [J]. Applied Physics B: Lasers and Optics, 2010, 99(3): 507–511.SCI 二区

37.  Xin-Hua Deng, Nian-Hua Liu, Jiang-Tao Liu, Qing-Hua Liao, Tian-Bao Yu. Enlargement of polarization-independent omnidirectional band gaps in the photonic heterostructures containing single-negative materials [J]. Journal of the Optical Society of America B, 2010, 27(6): 1174-1178.SCI)二区

38.  Yuan Ji-Ren, Huang Hai-Bin, Deng Xin-Hua, Liang Xiao-Jun, Zhou Nai-Gen, Zhou Lang. Enhanced near-infrared responsivity of silicon photodetector by the impurity photovoltaic effect. Chin. Phys. B, 2015, 24(4): 048501. SCI

39.  Xue-Yong Deng, Xin-Hua Deng, Fu-Hai Su, Nian-Hua Liu, and Jiang-Tao Liu. Broadband ultra-high transmission of terahertz radiation through monolayer MoS2. Journal of Applied Physics, 2015, 118(22): 224304SCI

40.  Deng Xin-Hua, Liu Jiang-Tao, Yuan Ji-Ren, Wang Tong-Biao. The new characteristics matrix method based on conductivity and its application on the optical properties of graphene in the THz frequency range [J]. Acta Physica Sinica, 2015, 64(5): 057801. SCI

41.  Bao-Biao Yu, Xin-Hua Deng*, Jiren Yuan and Qing-Hua Liaob. Tunable THz optical bistability in graphene-based heterostructures. Journal of Modern Optics, 2015, 62(19): 1650-1654. SCI

42.  Deng Xin-Hua, Yuan Ji-Ren, Liu Jiang-Tao, Wang Tong-Biao. Tunable terahertz photonic crystal structures containing graphene [J]. Acta Physica Sinica, 2015, 64(7): 074101. SCI

43.  Yuan Ji-Ren, Shen Hong-Lie, Zhou Lang, Huang Hai-Bin, Zhou Nai-Gen, Deng Xin-Hua, Yu Qi-Ming. beta-FeSi2 as the bottom absorber of triple-junction thin-film solar cells: A numerical study [J]. Chin. Phys. B, 2014, 23(3): 038801. SCI

44.  Wang Tong-Biao, Liu Nian-Hua, Yu Tian-Bao, Deng Xin-Hua, Xu Xu-Ming, and Liao Qing-Hua. Electromagnetic Bloch oscillation in one-dimensional multiple microcavities composed of metamaterials [J]. Chin. Phys. B, 2014, 23(4): 044101. SCI

45.  Jiren Yuan, Honglie Shen, Lang Zhou, Haibin Huang, Naigen Zhou, Xinhua Deng, Qiming Yu. Impurity photovoltaic effect in silicon solar cells doped with two impurities [J]. Optical and Quantum Electronics, 2014, 46(11): 1457-1465. SCI

46.  Jiren Yuan, Lang Zhou, Xinhua Deng, Qiming Yu, Qinfeng Wu. Numerical analysis of Cu2ZnSnS4 thin film solar cells using novel buffer layers [J]. Optoelectronics and Advanced Materials-Rapid Communications, 2013, 7(3-4): 225-230. SCI

47.  Jiren Yuan, Honglie Shen, Lang Zhou, Haibin Huang, Naigen Zhou, Xinhua Deng, Qiming Yu. Impurity photovoltaic effect in silicon solar cells doped with two impurities [J]. Optical and Quantum Electronics, 2013, 46(11): 1457-1465. SCI

48.  X. H. Deng, J. T. Liu, J. R. Yuan, T. B. Wang, and N. H. Liu. Tunable bandpass filters based on one-dimensional bilayer period structure composed of single-negative materials [J]. European Physical Journal B, 2012, 85(7): 232-236. SCI

49.  Tong-Biao Wang, Nian-Hua Liu, Xin-Hua Deng and Qing-Hua Liao. Bloch oscillations in one-dimensional coupled multiple microcavities containing negative-index materials [J]. Journal of Optics, 2011, 13(9): 095705. SCI IF2.0

50.  Jiren Yuan, Honglie Shen, Haibin Huang, and Xinhua Deng. Positive or negative gain: Role of thermal capture cross sections in impurity photovoltaic effect [J]. Journal of Applied Physics, 2011, 110(10): 104508. SCI  IF2.21

51.  Tianbao Yu, Lingjuan He, Xinhua Deng, Liguang Fang, Nianhua Liu. Power splitter based on photonic crystal waveguides with an air holes array [J]. Optical Engineering, 2011, 50(11): 114601. SCI

52.  Jiren Yuan, Honglie Shen, Fulian Zhong and Xinhua Deng. Impurity photovoltaic effect in silicon solar cells doped with tellurium [J]. Optoelectronics and Advanced Materials-Rapid Communications, 2011, 5(8): 866 – 869. SCI

53.  Xin-Hua Deng, Ji-Ren Yuan, Wen-Qin Hong, Hong Ouyang. Tunable filters based on Thue-Morse quasicrystals composed of single-negative materials [J]. Physics Procedia, 2011, Vol. 22, pp. 360-365. EI

54.  Jiren Yuan, Honglie Shen, Fulian Zhong and Xinhua Deng. Impurity photovoltaic effect in magnesium-doped silicon solar cells with two energy levels [J]. Physica Status Solidi A-Applications and Materials Science, 2012, 209(5): 2002-1006. SCI

55.  Hong Ouyang, Xin-Hua Deng. Direction-independent band gaps extension based on Thue-Morse photonic heterostructures containing negative-index materials [C]. Materials Science Forum, 2011, Vols.675-677, pp.1077-1080.EI

56.  Xin-Hua Deng, Jiang-Tao Liu, Jie-Hui Huang, Liner Zou, Nian-Hua Liu. Omnidirectional band gap in Fibonacci quasicrystal containing single-negative materials [J]. Journal of Physics: Condensed Matter, 2010, 22(5): 055403-1-5.SCI IF2.355

57.  Liu Jiang-Tao, Xiao Wen-Bo, Huang Jie-Hui, Yu Tian-Bao, Deng Xin-Hua. Tunable pass band of anomalous dispersion photonic crystals [J]. Acta Physica Sinica, 2010, 59(3): 1665-1670. SCI   

58.  X.H. Deng, T.B Wang, J.T. Liu, J.H. Huang, T.B. Yu, Q.H. Liao and N.H. Liu. Polarization-independent omnidirectional band gaps in heterostructures containing negative-index materials [J]. European Physical Journal B, 2010, 78(1): 7-12.SCI 

59.  Xin-Hua Deng, Yong-Gong Peng, Jiang-Tao Liu, Ji-Ren Yuan and Liner Zou. Omnidirectional reflection band extension using Fibonacci photonic heterostructures containing negative-index materials [J]. Journal of Modern Optics, 2010, 57(4): 325-329.SCI

 

获奖情况:

1.  邓新华“新型人工微结构电磁材料对光的操控及其应用研究”荣获2021江西省自然科学三等奖。排名第一

2.  邓新华“光在非均匀特异材料中的传播与调控”荣获2011年江西省高校科技成果二等奖(成果编号:J1102004)。排名第一

3.  邓新华荣获《物理学报》2020年度优秀审稿人

4.  邓新华荣获《物理学报》2021年度优秀审稿人

5.      邓新华“单负材料光子晶体中的可调共振隧穿模”获华东六省一市物理学术会议第十四届联合年会青年优秀论文一等奖排名第一

6.  邓新华2011年获得“江西省高校中青年骨干教师”荣誉称号

7.  邓新华荣获2011国家留学基金(全年资助)

 

近年来承担的项目情况:

1        国家自然科学基金项目,基于石墨烯的新型复合结构特异材料(metamaterials)实现对THz波的全新操控机制研究,编号:116640252017.12020.12,直接经费42万元,主持

2        国家自然科学基金项目,等离子体Airy光束的调控及其动力学行为研究,编号:112640292013.12016.1250万元,第一参与人。

3        江西省自然科学基金,基于石墨烯的可调谐新型特异材料对THz波传播和调控研究,编号:20161BAB2010122016.12017.1210万元,主持

4        江西省教育厅科学技术研究项目(重点项目)   基于石墨烯的宽频可调谐超高速光开关的设计、制备及应用研究,编号:GJJ150021   2016.12018.125万元,主持

5        国家重点实验室基金项目,基于纳米复合材料电磁超表面耦合机理的研究,编号:2022-KF-15, 2022.12023.125万,主持

6        国家重点实验室重点基金项目,基于石墨烯的新型特异材料对微波毫米波传播与调控研究,编号:K201606 2016.12018.1215万,主持。

7        江西省学位与研究生教育教学改革研究项目,光学工程专业研究生创新型学习教学模式研究与实践,编号:JXYJG-2016-0202016.122018.121万元,主持

8        南昌大学教学改革研究重点(招标)项目,基于虚拟仿真技术平台的创新型人才培养模式研究,编号:NCUJGLX2016.102018.100.5万元,主持

9        江西省高等学校教学改革研究课题重点(招标)项目,基于虚拟仿真技术平台的创新型人才培养模式研究,编号:JXJG-16-1-92016.122018.122万元,主持

10    江西省高等学校教学改革研究课题,基于物理实验竞赛的创新型人才培养模式的研究与实践,编号:JXJG-21-1-322021.92023.90.5万元,主持

11    江西省自然科学基金,新型人工电磁材料对光孤子的操控研究,编号:2010GZW00422010.12012.125万元,主持

12    江西省自然科学基金项目,特异材料光子晶体中光辐射与传播性质研究及应用,编号:2008GZW00032008.12010.123万元,主持

13    江西省高校省级教改立项项目,构建创新型大学物理实验教学平台的研究,编号:JXJG-09-1-342010.12012.60.6万元,主持

14    江西省自然科学基金,新型人工电磁材料的对称性和拓扑性质调控光的研究,编号:20122BAB2020022012.12014.125万元,主持。

15    江西省教育厅科学技术研究项目,超宽频带可调谐新型人工电磁材料的设计、制备及应用研究编号:GJJ120072012.12014.12,3万元,主持。

16    国家重点实验室开放基金重点项目,新型人工电磁材料对光子的操控研究,编号:KF2010-MS-052011.12013.1215万,主持。

17    国家重点实验室开放基金项目,特异材料中微波毫米波传播的非线性特性与操控研究,编号:K201216   2012.12015.1210万元,主持。

18    国家重点实验室开放基金项目,电磁波在非均匀特异材料中的传播与调控,编号:K2009012009.92011.610万元,主持。

19    江西省教育厅科学技术研究项目,光在非均匀的单负材料中的传播与控制,编号:GJJ090732009.12010.122万元,主持。

20    教育部重点实验室开放基金项目,两种光子作用下非晶硫系半导体波导的非线性光学效应研究,编号:OS08-42008.12011.12,5万元,第一参与人。

21    江西省主要学科学术和技术带头人培养计划项目,光子晶体中光的辐射与传播研究2006.12010.1224万元,第一参与人。

22    国家自然科学基金项目,光子晶体微腔中自发辐射的非马尔科夫动力学过程研究,编号:106640022007.12010.1230万元,第一参与人。