张义 更新日期:2023-05-15
张义,男,1986年出生,学硕导师
工作单位 理学院
单位电话 0835-2886186
电子邮箱 yizhang@sicau.edu.cn
招生专业 【学硕】:0710Z1生物资源化学,【专硕】:086000生物与医药
◆个人简历
2008年毕业于兰州大学物理学基地班,获理学学士学位。2008年9月至2015年1月于中国科学技术大学凝聚态物理专业进行直接攻博,获理学博士学位,2015年2月至2016年6月于中国科学技术大学从事博士后研究。2016年7月至今在四川农业大学进行教学科研工作。在农用发光材料方向开展科研工作,主持教育厅青年基金一项,在J ALLOY COMPD等学术刊物上以第一或通讯作者发表论文十余篇篇。
◆教育经历
2008/09-2015/01 中国科学技术大学 凝聚态物理专业 直博

2004/09-2008/06 兰州大学 物理学基地班 本科
◆研究领域
农用发光材料
◆发表论文
(1) Zhang Yi#,*, Zhou Cuiping#, Li Jingwei, Dong Jing, Wen Shuai, Yin Pengfei, Sun Xiyuan, Wang Jian, Lu Zhiwei, Rao Hanbing, Realization of highly efficient Ba2SrWO6:Mn4+ phosphor via La addition strategy and application for plant cultivation LED, Journal of Alloys and Compounds, 2023, 937: 168418.
(2) Zhang Yi*, Zhou Cuiping, Zhang Qifeng, Yin Pengfei, Sun Xiyuan, Wang Kaiming, Wang Jian, Feng Xing, Change from La2Ti2O7 to LaTiO3 induced by Li2CO3 addition: Higher local symmetry and particle uniformity achieved an efficient Mn4+ activated far red phosphor for agricultural cultivation, Journal of Luminescence, 2022, 248: 119000.
(3) 张义,周翠平,张启凤,冯馨丹,植物补光用非晶态La2Ti2O7:Eu3+荧光粉的燃烧合成及性能,无机化学学报,2022,38(6):1073-1080.
(4) Zhou Cuiping#, Zhang Yi#,*, Zhu Jiajie, Ren Xuefei, Zhu Yingjie, Yin Pengfei, Zhao Liang, Wang Jian, Feng Xing, Enhanced luminescence performances of BaLaMgTaO6:Mn4+ red phosphor by Bi3+, Ca2+ doping for indoor plant lighting supplementary LED, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2022, 268: 120655.
(5) Ren Xuefei#, Zhang Yi#,*, Su Chang, Zhan Jingwen, Fu Lin yan, Yang Yunlong, Sun Xiyuan, Wang Jian, Feng Xing, High quantum efficiency and luminescence properties of far-red Sr3NaTaO6: Mn4+, Ba2+ phosphor for application in plant growth lighting LEDs, Journal of Luminescence, 2022, 244: 118701.
(6) Zhu Yingjie#, Zhang Yi#,*, Yang Yunlong, Li Piesong, Zheng Bixuan, Wu wenjuan, Liu Yuntao, Yin Pengfei, Wang Jian, Feng Xing, High quantum efficiency and thermal stability Sr3LiNbO6:Mn4+, Zn2+ phosphors for application in indoor plant growth lighting, Journal of Luminescence, 2022, 248: 118961.
(7) Fu Linyan#, Yang Yunlong#, Zhang Yi*, Ren Xuefei, Zhu Yingjie, Zhu Jiajie, Wu Yi, Wang Jian, Feng Xing, The novel Sr3LiSbO6: Mn4+, Ca2+ far-red-emitting phosphors with over 95% internal quantum efficiency for indoor plant growth LEDs, Journal of Luminescence, 2021, 237: 118165.
(8) 张义,冯兴,汪建,殷鹏飞,孙希媛,王开明,在大学物理教学中培养学生的批判性思维能力——— 浅析开放性提问的作用,物理通报,2021,3:39-42
(9) Yang Yunlong, Fu Linyan, Ren Xuefei, Zhu Yingjie, Zhu Jiajie, Wu Yi, Zhang Yi*, Sr3LiTaO6: xMn4+ red-emitting phosphors for indoor plant growth lighting: High thermal stability and quantum efficiency, Journal of Luminescence, 2021, 238: 118234.
(10) Zhang Yi*; Sun Song; Yin Pengfei; Yang Yunlong; Fu Linyan; Wang Jian; Feng Xing; Rao Hanbing; Wang Yanying; Luminescence-enhancement and tunable-excitation of far-red emitting La2LiSbO6: Mn4+, Bi3+ phosphors for plant growth lighting, Journal of Luminescence, 2020, 224: 117268.
(11) Zhang Yi#, Dai Changlian#, Liu Wei, Wang Yanying, Ding Fang, Zou Ping, Wang Xianxiang, Zhao Qingbiao*, Rao Hanbing*, Ultrathin films of a metal-organic framework prepared from 2-methylimidazole, manganese(II) and cobalt(II) with strong oxidase-mimicking activity for colorimetric determination of glutathione and glutathione reductase activity, Microchimica Acta, 2019, 186(6): 1-9.
(12) Zhang Yi,Sun Song*,Kang Rui,Zhang Jun,Zhang Ningning,Yan Wenhao,Xie Wei,Ding Jianjun,Bao Jun,Gao Chen*,Polymethylmethacrylate-based luminescent solar concentrators with bottom-mounted solar cells,Energy Conversion and Management,2015,95(1): 187-192.
(13) Zhang Yi,Sun Song*,Kang Rui,Zhang Jun,Wang Mengjiao,Xie Wei,Yan Wenhao,Ding Jianjun,Bao Jun,Gao Chen*,Enhanced efficiency of the luminescent solar concentrator fabricated with an aqueous layer,Chinese Optics Letters,2014,12(7): 073501.
(14) Zhu Jiajie#, Sun Lin#, Zhang Yi*, Fu Linyan, Zhu Yingjie, Ren Xuefei, Long Yin, Wu Yi, Wang Jian, Feng Xing, Enhanced luminescence performance and efficiency of La2NaSbO6: Mn4+ by co-doping Ca2+ for plant growth lighting, Physica B: Physics of Condensed Matter, 2021, 617: 413141.