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广西大学化学化工学院导师教师师资介绍简介-廖森

本站小编 Free考研考试/2021-06-12

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1984年毕业于武汉化工学院(现改名为:武汉工程大学)化工系化学制药专业,获学士学位。1990年中山大学化学系硕士研究生毕业,获理学硕士学位。2000年中山大学化学化工学院博士研究生,师从刘汉钦教授及康北笙教授从事过渡金属配合物及其谱学的研究,毕业时获理学博士学位。1991年晋升讲师;1996年晋升副教授;2002年晋升教授。2010年美国德州大学奥斯汀分校(University of Texas at Austin)高级访问****2001.9-至今, 广西大学, 化学化工学院, 教授1990.7-1997.9, 广西师范学院, 化学系, 副教授1984.7-1987.9, 南宁市制药厂, VC车间, 技术员现为广西大学化学化工学院化学系教授。主要从事无机功能材料及无机化学及相关课程的教学,主讲过高等无机化学,无机化学,无机化学实验,生物无机化学,双语配位化学,丰产元素化学
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中国数学会均匀设计分会常务理事
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高等无机化学,双语配位化学,生物无机化学,试验设计及数据挖掘技术,无机化学,无机化学实验
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主要研究方向为:无机发光功能材料,碳量子点及石墨烯的合成及其应用;兼顾研究方向:热分解动力学,环境有机化学,试验设计及数据挖掘技术,数码中医及数码中医药的开发与应用,内源性基因信息及干细胞的数码调控技术与应用研究。
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I、正在主持的科研项目1、中国国家自然科学基金地区基金项目,碳量子点及Eu3+共掺钼酸镧红色荧光粉的合成、性能及能量转移机制研究(No. **), 直接经费40万元,时间2017.01-2020.12。2、中国国家自然科学基金地区基金项目,石墨烯量子点诱导Mn4+掺杂氟化物红光荧光粉的超级增强发光和较大负热猝灭率机制的研究,(No.**), 直接经费40万元,时间2020.01-2023.12。3、广西科学基金重点项目:石墨烯量子点增敏Mn4+掺杂氟铝酸钾红光荧光粉的合成及性能研究(2020GXNSFAA159036), 40万,2020,01-2023,12.4、广西有色金属及特色材料加工重点实验室开放基金,具有规整形貌之Mn4+掺杂氟铝酸盐红色荧粉的合成及其荧光增强方法的研究(GXYSOF1804),5万,201801-201912。 5、广西有色金属及特色材料加工重点实验室开放基金,石墨烯量子点,Mn4+共掺氟铝酸钾红光荧光粉的合成及其发光和热稳定性增强的机理研究(2019GXYSOF03),5万,201901-202012。 II、近年已结题主持的项目1、广西科学研究与技术开发计划项目:“废弃食用油制备环保新型咪唑啉钢铁缓蚀剂的研发及其产业化”,( 桂科转**-26),经费25万元,2014.01-2015.12。2、南宁市科学研究与技术开发计划项目:“海洋防腐抗污专用贝壳粉涂料的研发”,(**),经费25万元,时间2014.01-2015.12。III、指导的研究生正在主持的项目:1、硕士研究生创新项目,石墨烯碳量子点对Mn4+掺杂氟化物红色荧光粉的超级增敏及热稳定性提升的研究(No. YCSW**),主持人:刘有苗,2019.01-2020.07。2、硕士研究生创新项目,石墨烯量子点对K2TiF6:Mn4+红光荧光粉发光的选择性增敏及其机理的研究(YCSW**),主持人:李月兰,2020.01-2021.07。IV. 指导本科生正在主持的项目[1]项目主持人,冯语桐;石墨烯量子点,Mn4+共掺氟铝酸盐红光荧光粉的合成及其发光和热稳定性增强的机理研究 (No. 7),2019,5-2021,5[2]项目主持人,陈龙;石墨烯量子点及基质双重包覆Mn4+,Li+共掺氟硅酸钾红光荧光粉的合成及其多项发光性能增强机理的研究(No. 6),2020,5-2022,5
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1. 代表性论文[1]Liao Sen *, Yang Xiaoping, Jones Richard A. Self-Assembly of Luminescent Hexanuclear Lanthanide Salen Complexes. Crystal Growth and Design, 2012, 12, 970–974. (SCI 二区, IF=4.390). [2]Chen Zhipeng, Chai Qian, Liao Sen *, Chen Xia, He Yu, Li Yu, Wu Wenwei, Li Bin. Non-isothermal kinetics study: IV. Comparative methods to evaluate Ea for thermal decomposition of KZn2(PO4)(HPO4) synthesized by a simple route. Industrial and Engineering Chemistry Research, 2012, 51(26), 8985–8991. (SCI二区, IF=2.072)[3]He Yu, Liao Sen *, Chen Zhipeng, Li Yu, XiaYao, Wu Wenwei, Li Bin. Non-isothermal kinetics study with isoconversional procedure and DAEM: LiCoPO4 synthesized from thermal decomposition of the precursor. Industrial & Engineering Chemistry Research, 2013, 52(5):1870–1876. ( SCI二区, IF=2.206)[4] Chen Zhipeng, Chai Qian, Liao Sen *, HeYu, Wu Wenwei. Preparation of LiZnPO4•H2O via a novel modified method and its non-isothermal kinetics and thermodynamics of thermal decomposition. Journal of Thermal Analysis and Calorimetry, 2012,108(3):1235–1242. (SCI 四区, IF=1.752)[5]Chai Qian, Chen Zhipeng, Liao Sen*, He, Yu Li Yu, Wu Wenwei, Li Bin. Preparation of LiZn0.9PO4:Mn0.1•H2O via a simple and novel method and its non-isothermal kinetics using iso-conversional calculation procedure. Thermochimica Acta, 2012, 533:74–80. (SCI 四区, IF=1.908) [6] Li Yu, Chai Qian, Liao Sen*, Chen Zhipeng, He Yu, XiaYao, Wu Wenwei, Li Bin. Non-isothermal kinetics study with isoconversional procedure and DAEM: Thermal decomposition of LaPO4:Ce,Tb•0.5H2O. Materials Chemistry and Physics, 2013, 142: 453–458. (SCI 二区, IF=2.072)[7]Chen Zhipeng, Chai Qian, Liao Sen *, He Yu, Li Yu, Wu Wenwei, Li Bin. Application of simplified version of advanced isoconversional procedure in non-isothermal kinetic study:Thermal decomposition of NH4Co0.9Zn0.1PO4•H2O. Journal of Thermal Analysis and Calorimetry, 2013,133(2),649-657. (SCI 四区, IF=1.982)[8]Chen Zhipeng, Chai Qian, Liao Sen *, He Yu, Li Yu, Bo Xiahong, Wu Wenwei, Li Bin. Application of isoconversional calculation procedure to non-isothermal kinetic study: III. Thermal decomposition of ammonium cobalt phosphate hydrate. Thermochimica Acta, 2012, 543, 205–210. (SCI 四区, IF=1.908) [9]He Yu, Liao Sen*, Chen Zhipeng, Chai Qian, Li Yu, Su Yaoyi, Wu Wenwei, Li Bin. Application of isoconversional calculation procedure to non-isothermal kinetics study Part II. Thermal decomposition of NH4CuPO4•H2O. Journal of Thermal Analysis and Calorimetry, 2013, 111(1): 313-321. (EI, SCI四区, IF=1.982) [10] Chen Zhipeng, Xia Yao, Liao Sen*, Huang Yingheng, Li Yu, He Yu, Tong Zhangfa, Li Bin, Thermal degradation kinetics study of curcumin with nonlinear methods. Food Chemistry, 2014,155:81–86. (SCI二区, IF=3.259,2014,7,15)[11] Li Yu, Xia Yao, Liao Sen*, Long Qiwei, Zhao Xingyun, Dai Shasha, Lu Ke. A novel orange emissive phosphor LaPO4: Bi, Sm with sharp and splitting emission peaks of Sm3+. Materials Letters , 2014, 123: 112–115. (SCI 二区, IF=2.269,2014,5,15)[12] Huang Yingheng, Xia Yao, Liao Sen*, Tong Zhangfa, Liu Gang, Li Yu, Chen Zhipeng, Synthesis of α-Al2O3 platelets and kinetics study for thermal decomposition of its precursor in molten salt. Ceramics International, 2014, 40,8071–8079. (SCI二区, IF=2.086)[13]Huang Yingheng, Xia Yao, Chen Zhipeng, Liao Sen*, Tong Zhangfa, He Yu, Li Yu, Long Qiwei. Kinetics Study with Rigorous Nonlinear Methods for Thermal Decomposition of Polysaccharide Iron Complex. Food Biophysics, 2014, 9,277–284. (SCI三区, IF=1.551)[14]Long Qiwei, Xia Yao, Liao Sen*, LiYu, Wu Wenwei, Huang Yingheng. Facile synthesis of hydrotalcite and its thermal decomposition kinetics mechanism study with masterplots method. Thermochimica Acta 2014, 579:50–55. (SCI 四区, IF=2.105).[15]He Yu, Liao Sen*, Chen Zhipeng, Li Yu, XiaYao, Wu Wenwei, Li Bin. Non-isothermal kinetics study with advanced isoconversional procedure and DAEM: LiNiPO4 synthesized from thermal decomposition of the precursor . Journal of Thermal Analysis and Calorimetry, 2014,115(1):237–245. (SCI 四区, IF=2.206). [16]Long Qiwei, Xia Yao, Liao Sen*, LiYu, Wu Wenwei, Huang Yingheng. Facile synthesis of hydrotalcite and its thermal decomposition kinetics mechanism study with masterplots method. Thermochimica Acta 2014, 579:50–55. (SCI 四区, IF=2.105).[17] He Yu, Liao Sen*, Chen Zhipeng, Li Yu, XiaYao, Wu Wenwei, Li Bin. Non-isothermal kinetics study with advanced isoconversional procedure and DAEM: LiNiPO4 synthesized from thermal decomposition of the precursor . Journal of Thermal Analysis and Calorimetry, 2014,115(1):237–245. (SCI 四区, IF=2.206). [18]Long Qiwei, Gao Yong, Huang Yingheng, Liao Sen *, Song Baoling, Wu Wenwei, Cai Jiajia, Dual charge compensation effect by Na+ ions on the luminescence behavior of red phosphor NaMgPO4:Eu3+. Materials Letters 2015, 160:436–439. (SCI 二区, IF=2.489)[19]Xia Yao, Huang Yingheng, Li Yu, Liao Sen*,Long Qiwei, Liang Jianqun. LaPO4: Ce, Tb, Yb phosphor — Synthesis and kinetics study for thermal process of precursor by Vyazovkin, OFW, KAS, Starink and Mastplosts methods. Journal of Thermal Analysis and Calorimetry, 2015,120:1635–1643 (SCI 四区, IF=2.042)[20] Long Qiwei, Xia Yao, Huang Yingheng*, Liao Sen*, Gao Yong, Huang Jiaming, Liang Jingqun, Cai Jiajia. Na+ induced electric-dipole dominated transition (5D0→7F2) of Eu3+ emission in AMgPO4:Eu3+ (A=Li+, Na+, K+) phosphors . Materials Letters 2015, 145: 359–362. (SCI 二区, IF=2.489)[21]Huang Yingheng, Xia Yao, Li Yu, Liao Sen*, Long Qiwei, Linang Jianqun, Cai Jiajia. Synthesis of a new phosphor (LaPO4:Ce, Li, Mn) and kinetics study for thermal process of its precursor. Advanced Powder Technology, 2015, 26, 861-867. (SCI三区, IF=2.638)[22]Huang Yingheng, Xia Yao, Long Qiwei, Liao Sen*, Li Yu, Liang Jiangqun, Cai Jiajai. Large-scale synthesis of aluminium borate nanowires by a simple molten salt method. Ceramics International, 2015,141:2607–2610. (SCI二区, IF=2.605 )[23]Xia Yao, Huang Yingheng, Long Qiwei , Liao Sen*, Gao Yong, Liang Jianqun, Cai Jiajia. Near-UV light excited Eu3+,Tb3+,Bi3+ co-doped LaPO4 phosphors: Synthesis and enhancement of red emission for WLEDs. Ceramics International, 2015, 41:5525–5530 (SCI二区, IF=2.605)[24]Xia Yao, Huang Yingheng, Li Yu, Liao Sen*,Long Qiwei, Liang Jianqun. LaPO4: Ce, Tb, Yb phosphor — Synthesis and kinetics study for thermal process of precursor by Vyazovkin, OFW, KAS, Starink and Mastplosts methods. Journal of Thermal Analysis and Calorimetry, 2015,120:1635–1643 (SCI 四区, IF=2.042)[25]Gao Yong, Xia Yao, Huang Yingheng, Long Qiwei, Zhu Chongzhe, Huang Jiaming, Huang Xiaoshan, and Liao Sen*, Eu3+, Sm3+ Co-Doped La0.8Y0.2PO4: A novel and potential red-emitting phosphor for UV-based white light-emitting diodes. Science of Advanced Materials, 2016, 8:1093–1100.[26]Gao Yong, Xia Yao, Huang Yingheng, Long Qiwei, Zhu Chongzhe, Huang Jiaming, Huang Xiaoshan, and Liao Sen*, Eu3+, Sm3+ Co-Doped La0.8Y0.2PO4: A novel and potential red-emitting phosphor for UV-based white light-emitting diodes. Science of Advanced Materials, 2016, 8:1093–1100. ( SCI二区,IF=1.579, 2016,5,16)[27]Long Jinqiao, Luo Zhirong, Wang Tianman, Pan Lifei, Long Qiwei, Liao Sen*, Huang Yingheng*, Zhang Huaxin*, Enhanced photoluminescence and energy transfer in the novel red emitting phosphors SrZn2(PO4)2:Eu3+, Tb3+, Li+, Journal of Materials Science: Materials in Electronics, 2017, 28(1):657–660.(**)(隆金桥,罗志荣,王田曼,番丽菲,龙琦苇,廖森,黄映恒,张华新)[28]Gao Yong, Long Qiwei, Nong Rong, Wang Tianman, Zhang Huaxin*, Huang Yingheng*, Liao Sen*, Strain induced enhancement of Eu3+ emission in red phosphor NaMgPO4:Eu3+, Al3+, Journal of Electronic Materials,2017,46(2):911-916.(2017,2,16)[29]Wang Tianman, Gao Yong, Chen Zhipeng, Huang Qiuying, Wu Lini, Huang Yingheng*, Liao Sen**, Zhang Huaxin*, The formation of KF induced red-emitting phosphors K 2 TiF 6• BaF (HF 2): Mn 4+ by cation exchange. Journal of Luminescence, 2017, 188: 307-312(SCI 二区, IF=2.693, 2017,8,15).[30]Wang Tianman, Nong Rong, Gao Yong, Zhang Xuzi, Tan Zanru, Jian Lipeng, Liao Sen*, Yingheng Huang, Huaxin Zhang, Coating synthesis and enhanced photoluminescence of NaCl@LiLa(MoO4)2:Eu3+ . Materials Letters , 2017,208,77–81(SCI 二区, IF=2.572, 2017,12,1).[31]Wang Tianman, Gao Yong, Chen Zhipeng, Huang Qiuying, Song Baoling, Huang Yingheng, Liao Sen*, Zhang Huaxin, Cation exchange synthesis and cations doped effects of red-emitting phosphors K2TiF6:Mn4+, M2+( M= Mg, Ca, Sr, Ba, and Zn) . Journal of Materials Science: Materials in Electronics, 2017, 28,11878–11885. (SCI三区,IF=2.019,2017,8,1)[32]Long Jinqiao, Wang Tianman, Luo Zhirong, Gao Yong, Song Baoling, Liang Jing, Liao Sen*, Huang Yingheng , Zhang Huaxin. A novel energy transfer inducing strong enhancement of electric dipole transition in Na3Mo12PO40:xEu3+ phosphors . Materials Research Express. 2017, 4, 086305 (SCI 四区, IF=2.042, 2017,8,1).[33]Liu Youmiao, Wang Tianman, Chen Zhipeng, Chen Keying, Guan Mingming, Huang Yingheng, Liao Sen*, Zhang Huaxin. NaF induced enhancement of luminous efficiency in narrow-band red emitting K2TiF6:Mn4+@NaF phosphors. Journal of Materials Science: Materials in Electronics , 2018,29:12536–12542.(2018,8,16)(SCI三区)[34]Wang Tianman, Liu Youmao, Wu Xiaolin, Yang Liu, Cao Chenchen, Liao Sen*, Huang Yingheng, Zhang Huaxin . Simple coating synthesis and enhanced luminescence behaviour of LiLa(MoO4)2:Eu3+@NaF. Materials Research Bulletin 2018,103, 181–185 (SCI 二区, IF=2.446, 2018,7, 1). [35]Liu Youmiao, Wang Tianman, Zhang Xuzi, Cao Chenchen, Yang Liu, Huang Yingheng, Liao Sen, Zhang Huaxin, Synthesis, luminescence properties and nephelauxetic effect of nano stick phosphors K3AlF6:Mn4+ for warm white LED. Journal of Materials Science: Materials in Electronics, 2019, 30:1870–1877. ( **)(SCI三区)[36]Liu Youmiao, Wang Tianman, Tan Zanru, Meng Jianming, Huang Wenjing, Huang Yingheng, Liao Sen ⁎, Zhang Huaxin, Novel emission bands of Na2TiF6:Mn4+ phosphors induced by the cation exchange method. Ceramics International, 2019, 45, 6243–6249.(SCI二区,**)[37] Liu Youmiao, Li Yuelan, Wenjing Huang, Meng Jianming, Liang Weifeng, Liao Sen, Huang Yingheng, Zhang Huaxin, Enhancement of zero phonon line for Na2TiF6:Mn4+, Li+ phosphors induced by Li+, Journal of Materials Science: Materials in Electronics, 2019, 30, 14646–14656( SCI三区,**).[38] Wang Yinglong, Wen Jiahao, Wang Tianman , Wu Xiaolin, Cao Chenchen, Yang Liu1, Liao Sen, Huang Yingheng, Synthesis of (La0.8Y0.2)PO4:Sm3+, Eu3+, Na+ and kinetics mechanism study with Z(a) master plots method for thermal process of its precursor, Journal of Thermal Analysis and Calorimetry, 2019,136, 2487–2494. (SCI四区,**).[39] Liu Youmiao, Li Yuelan, Meng Jianming, Liang Weifeng, Huang Wenjing, Liao Sen, Huang Yingheng, Zhang Huaxin, Novel luminescence enhancement and splitting of excitation and emission bands of Na2SiF6:Mn4+,Li+ phosphors induced by Li+ co-doping, Journal of Luminescence, 2020, 217, 116770(SCI二区,**).[40] Liu Youmiao, Li Yuelan, FengYutong, Luo Jiaxin, Xu Xiaofan, Liao Sen, Huang Yingheng, Zhang Huaxin, Significant enhancement and broadening of excitation bands of K2SiF6:Mn4+, NH4+ phosphors induced by NH4+, Materials Research Bulletin, 2020, 121, 110622(SCI三区,**).[41] Liu Youmiao, Li Yuelan, Feng Yutong , Meng Jianming , Liao Sen, Huang Yingheng, Zhang Huaxin, Effects of graphene quantum dots coating on the luminescence properties of K2SiF6:Mn4+ red emitting phosphors, Journal of Materials Science: Materials in Electronics, 2020,31(SI),444-456.(SCI三区,**).[42] Chen Zhiyong, Wang Yinlong, Liao Sen, Huang Yingheng, Grinding kinetics of waste glass powder and its composite effect as pozzolanic admixture in cement concrete. Construction and Building Materials 2020, 239, 117876(SCI二区,**).[43] Li Yuelan, Liu Youmiao, Huang Haoran, Liao Sen, Huang Yingheng, Zhang Huaxin, Novel splitting of excitation and emission spectra of K2TiF6:Mn4+ phosphors induced by graphene quantum dots. Journal of Materials Science: Materials in Electronics 2021, 32(1),485–495 (2021,01,16)(SCI三区). [44] Yuelan Li, Xue Zhong, Yan Yu, Youmiao Liu, Sen Liao, Yingheng Huang, Huaxin Zhang, H2O2-free preparation of K2SiF6:Mn4+ and remarkable high luminescent thermal stability induced by coating with graphene quantum dots. Materials Chemistry and Physics 2021, 260(2), 124149 (2021,02,15) (SCI三区). [45] Ming Junyu, Wang Yaxiong, Ling Shaokun, Liao Sen, Huang Yingheng, Zhang Huaxin, Conversion of thermal energy to light energy and energy transfer in KGdF4: Eu3+,Tb3+ phosphors. Inorganic Chemistry Communications 2021, 127(5), 108549 (2021,05,16) (SCI四区). [46] Li Yuelan, Yu Yan, Zhong Xue, Liu Youmiao, Chen Long, Liao Sen, Huang Yingheng, Zhang Huaxin, K2SiF6:Mn4+@K2SiF6 phosphor with remarkable negative thermal quenching and high water resistance for warm white LEDs. Journal of Luminescence 2021, 234 (6), 117968 (2021,06,16) (SCI三区). 2.代表性发明专利[1] 廖森,黄映恒,夏瑶,龙琦苇,侯蕾,罗春林,一种近紫外激发的磷酸盐白色荧光粉及其制备方法,ZL2.3.[2] 廖森,柴倩,陈智鹏,黄映恒,一种低热固相反应制备掺锰磷酸锌锂黄绿色荧光粉的方法, ZL2.6 [3] 廖森,尹彩流,黄映恒,龙琦苇,王秀飞,朱仁俊,文国富,一种碳酸钙晶须增强橡胶基摩擦材料及其制备方法,ZL8.7[4] 廖森,尹彩流,黄映恒,龙琦苇,王秀飞,朱仁俊,文国富,一种碳酸钙晶须增强树脂—橡胶基摩擦材料及其制备方法, ZL8.4(2018.4.24授权)[5]廖森; 黄映恒; 王银龙; 陈治勇; 李燕; 何灿。蓝光激发白光LED用氟化物红色荧光粉及其制备与改性方法,专利号:ZL3.0(授权日期:2020-10-30)3. 开发的软件[1]线性建模及非线性建模VBA软件[2]线性规划及非线性规划VBA软件[3]配方设计(配方均匀设计)的VBA软件[4]九种方法求解热分解动力学活化能的VBA软件[5]三种方法求解热分解动力学机理函数的VBA软件[6]两种求解热分解动力学指前因子的VBA软件[7]晶体场分析等六款荧光粉分析用的VBA软件4.可产业化的产品[1]蓝光激发白光LED用石墨烯量子点,Mn4+共掺杂氟化物系列红光荧光粉[2]六方形片状三氧化二铝晶须[3]心脏保养用系列数码配方
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