个人简介
杨清华,1986年出生,湖南永州人,博士,毕业于中国科学院上海光学精密机械研究所,现为中国计量大学光电材料与器件研究院高级实验师,硕士生导师,“浙江省高校高水平光电功能材料及计量检测创新团队”核心成员。主持完成浙江省自然科学基金项目1项和浙江省科技计划项目1项,参与完成国家自然科学基金项目4项和国防科工局项目1项;以第一或通讯作者在J. Euro. Ceram. Soc.、J. Lumin.、Adv. Powder Technol.等期刊发表学术论文10余篇,以第一发明人授权发明专利6项。杭州市硅酸盐学会理事;J. Asian Ceram. Soc.、Matter. Lett.、Nanosci. Nanotech. Lett.等国际期刊审稿人。
近期论文
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发表学术论文(第1/2作者SCI/EI收录学术论文13篇):
(1) Qinghua Yang, Huanping Wang, Long Zhang, et al, Highly-oriented (104) polycrystalline α-Al2O3 transparent ceramics prepared by a templated grain growth method. Journal of the European Ceramics Society, 2019, 39(4): 1721-1724.(SCI一区)
(2) Xiaoli Zhou, Qinghua Yang*, Huanping Wang, et al, Influences of reaction temperature, holding time and S/Zn molar ratio on structure, morphology, optical and electrical properties of ZnS nanoparticles synthesized by hydrothermal method. Journal of Materials Science: Materials in Electronics, 2019, 30(2): 1089-1099.(SCI三区,通讯作者)
(3) Qinghua Yang, Benxue Jiang, Long Zhang, et al, Incorporation of Zn2+ ions into Al2O3:Er3+/Yb3+ transparent ceramics: an effective way to enhance upconversion and near infrared emission. Journal of Luminescence, 2018, 199: 45-52.(SCI二区)
(4) Xiaoli Zhou, Qinghua Yang*, Huanping Wang, et al, Effects of Ni2+ concentration and vacuum annealing on structure, morphology and optical properties of Ni doped ZnS nanopowders synthesized by hydrothermal method, Advance Powder Technology, 2018, 29(4): 977-984.(SCI二区)
(5) Qinghua Yang, Hongping Ma, Degang Deng, et al, Preparation and luminescence of Cr4+ doped transparent glass ceramics containing dual nanocrystals of Zn1.7SiO4 and Li1.14Zn1.43SiO4. Material Letters, 2017, 193: 119-121.(SCI二区)
(6) Qinghua Yang, Benxue Jiang, Long Zhang, et al, Influence of dopant concentration on the transparent and thermal properties of Nd2O3-doped alumina translucent ceramics. Journal of Rare Earths, 2017, 35(9): 883-886. (SCI四区)
(7) Qinghua Yang, Huanping Wang, RuoShan Lei, et al, Low temperature formation of AlN nanofibers by carbothermalreduction nitridation of hydrothermal precursor fibers. Journal of Asian Ceramic Societies, 2017, 5: 13-17.(SCI二区)
(8) Qinghua Yang, Huanping Wang, Zoupeng He, et al, Influence of Li2CO3 additions to CaSiO3-Al2O3 ceramics on sintering temperature and microwave dielectric properties. Journal of the Ceramics Society of Japan, 2014, 122(2): 125-128. (SCI四区)
(9) Huanping Wang, Qinghua Yang, Guohua Jia, et al, Influence of yttrium dopant on the synthesis of ultrafine AlN powders by CRN route from a sol-gel low temperature combustion precursor. Advanced Powder Technology, 2014, 25(1): 450-456.(SCI二区)
(10) Huanping Wang, Qinghua Yang, Denghao Li, et al, Sintering behavior and microwave dielectric properties of MgTiO3 ceramics doped with B2O3 by sol-gel method. Journal of Materials Science & Technology, 2012, 28(8): 751-755.(SCI三区)
(11) 杨清华, 王焕平, 徐时清, 等, Y2O3和纳米AlN复合助剂对氮化铝陶瓷烧结及热传导性能影响的研究. 材料研究学报, 2013, 27(4): 342-348.(EI收录)
(12) Qinghua Yang, Huanping Wang, Shiqing Xu, et al, Synthesis and characterization of nano-sized AlN powders by CRN route from a sol-gel low temperature combustion precursor. Advanced Materials Research, 2012, 557-559, 644-648.(EI收录)
(13) 杨清华, 王焕平, 徐时清, 等, 钙辅助溶胶-凝胶碳热还原法合成超细氮化铝粉体. 化工学报, 2012, 63(6):1907-1912.(EI收录)
3、授权发明专利(第1/2发明人授权发明专利11项):
(1) 杨清华,王焕平,徐时清,等,一种过渡金属离子掺杂氧化铝陶瓷包边大口径掺钛蓝宝石晶体的方法,授权日期:2018.08.24,ZL 201610873291.4;
(2) 杨清华,王焕平,徐时清,等,一种以碳纤维为范本制备氮化铝纤维的方法,授权日期:2016.03.02,中国,ZL 201410410015.5;
(3) 杨清华,王焕平,徐时清,等,一种立方相氮化铝纤维的制备方法,授权日期:2016.01.20,中国,ZL 201410436264.1;
(4) 杨清华,徐时清,邓德刚,等,一种析出Zn1.7SiO4纳米晶的微晶玻璃及其制备方法,授权日期:2015.10.28,中国,ZL 201310367676.X;
(5) 杨清华,王焕平,徐时清,等,一种纳米氮化铝纤维制备方法,授权日期:2015.05.20,中国,ZL 201310270963.9;
(6) 杨清华,王焕平,黄华,等,一种具有颜色指示的全瓷牙用染色液及其制备方法,授权日期:2014.08.20,中国,ZL 201310276485.2;
(7) 姜本学,杨清华,张龙,等,晶粒定向排列透明多晶氧化铝陶瓷的制备方法,授权日期:2019.07.16,中国 ZL201710000716.5;
(8) 王焕平,杨清华,徐时清,等,一种钙辅助低温合成超细氮化铝粉体的方法,授权日期:2013.04.10,中国,ZL 201110349484.7;
(9) 王焕平,杨清华,徐时清,等,一种钇掺杂纳米氮化铝粉体的制备方法,授权日期:2013.04.10,中国,ZL 201110349474.3;
(10) 徐时清,杨清华,邓德刚,等,一种超宽带光纤放大器用透明微晶玻璃晶相可控析出的方法,授权日期:2016.03.02,中国,ZL 201310446419.5;
(11) 王焕平,杨清华,徐时清等,一种氮化铝基玻璃陶瓷及其制备方法,授权日期:2014.11.05,中国,ZL 201310315912.3。