范国枝发布时间:2014年11月27日
范国枝,女,博士,武汉轻工大学化学与环境工程学院教授,硕士生导师。1994年毕业于青岛科技大学有机化工专业,获学士学位;1999年毕业于湖南大学应用化学专业,获硕士学位;2006年毕业于华中科技大学材料物理与化学专业,获博士学位;2009年3月-2009年9月在日本北海道大学从事访学研究。先后从事药物、精细化学品、新型催化材料合成及多相催化的研究工作,目前主要从事二氧化碳和生物质等可再生资源的催化转化与综合利用。主持或参与科技部863项目、湖南省科委重点资助项目、湖北省自然科学基金、湖北省教育厅科技项目、武汉市科技局重点科技攻关项目等科研课题20余项。迄今获中国发明专利3项,已在国内外期刊发表学术研究论文40多篇,其中SCI收录论文20余篇,担任《Tetrahedron Letters》、《Carbohydrate Polymers》、《Catalysis Communications》、《Journal of Clean Production》、《Journal of Applied Polymer Science》和《Research on Chemical Intermediates》等SCI期刊的审稿专家。
主要研究方向
资源化工:可再生资源二氧化碳与植物纤维素的化学转化及利用;
材料合成:纳米介孔材料、有机-无机杂化材料的制备及其催化性能研究;
绿色有机合成:反应原料、介质及催化剂的绿色化。
主要科研项目
[1] 二氧化碳化学转化制备氨基甲酸酯的催化体系及反应机理研究(湖北省教育厅科学技术研究计划重点项目,D**,负责人);
[2] 利用稻杆制备醋酸纤维素的关键技术研究(武汉市科技局重点科技攻关项目,**,负责人);
[3] 综合利用纤维素酸催化水解技术研究(湖北省科技厅公益性研究项目,2012DBAO20001,主要参与人);
[4] 超临界CO2/离子液体两相体系中清洁合成碳酸二苯酯(湖北省科技厅自然科学基金项目,2011CDC114,负责人);
[5] 超临界CO2/离子液体两相体系中一步合成碳酸二甲酯(湖北省教育厅优秀中青年人才项目,Q**,负责人);
[6] 自干漆在铜材底的附着力研究(佛山奥英琪涂料厂委托,2009,负责人);
[7] 有机-无机杂化材料负载钯配合物及其催化Suzuki反应(湖北省科技厅自然科学基金项目,2007ABA369,负责人);
[8] 对溴苯甲醚的合成(黄石美华化工有限公司委托,2006-2007,负责人);
[9] 有机官能化SBA-15负载钯配合物的制备及其催化Suzuki反应研究(华中科技大学材料化学与服役失效湖北省重点实验室开放课题,200703,负责人)。
发明专利
[1] 范国枝, 王敏, 宋光森, 廖崇静, 方涛. 二醋酸纤维素的制备方法(申请号**08.6).
[2] 范国枝,郑立辉,王敏,翟爱霞,胡廷平. 一种由二氧化碳和苯酚直接合成碳酸二苯酯的方法 (授权公开号: CN**B).
[3] 郑立辉, 范国枝, 王敏, 宋光森.?一种相变蜡脱色的方法(授权公开号: CN**B).
学术论文
以第一作者或通讯作者发表的代表性研究论文如下(*为通讯作者):
[1] Fan Guozhi?, Liao Chongjing, Fang Tao, et al. Amberlyst 15 as a new and reusable catalyst for the conversion of cellulose into cellulose acetate. Carbohydrate Polymers, 2014, 114 (11): 203-209.
[2] Liao Chongjing, Fang Tao, Luo Shanshan, Fan Guozhi?, Song Guangsen. H3PW12O40·4H2O as an efficient catalyst for the conversion of cellulose into partially substituted cellulose acetate. Journal of Applied Polymer Science, 2014 (Published online, DOI: 10.1002/APP.41212).
[3] Fan Guozhi?, Liao Chongjing, Fang Tao, et al. Hydrolysis of cellulose catalyzed by sulfonated poly(styrene-co-divinylbenzene) in the ionic liquid 1-n-butyl-3-methylimidazolium bromide. Fuel processing Technology, 2013, 16(12): 142-148.
[4] Fan Guozhi?, Wang Min, Liao Chongjing, et al. Isolation of cellulose from rice straw and its conversion into cellulose acetate catalyzed by phosphotungstic acid. Carbohydrate Polymers, 2013, 94 (4): 71-76.
[5] Fan Guozhi?, Wang Min, Duan Zhenxiao, et al. Synthesis of diphenyl carbonate from carbon dioxide, phenol, and carbon tetrachloride catalysed by ZnCl2 using trifluoromethanesulfonic acid as functional co-catalyst. Australian Journal of Chemistry, 2012, 65(12): 1667-1673.
[6] Fan Guozhi?, Duan Zhenxiao, Wang Min. Suzuki reaction catalyzed by Pd(II) anchord on polymer in supercriyical carbon dioxide. Appllied Mechanical Materials, 2012, 466-467: 216-219.
[7]Fan Guozhi?, Zhao Haitao, Duan Zhenxiao, et al. A novel method to synthesize diphenyl carbonate from carbon dioxide and phenol in the presence of methanol. Catalysis Science & Technology, 2011, 1(6): 1138-1141.
[8] Fan Guozhi?, Wang Zhigang, Zou Bing, et al. Synthesis of diphenyl carbonate from compressed carbon dioxide and phenol without use of organic solvent. Fuel Processing Technology, 2011, 92 (5): 1052-1055.
[9] Fan Guozhi?, Zou Bing, Cheng Siqing et al. Ligandless palladium supported on SiO2-TiO2 as effective catalyst for Suzuki reaction. Journal of Industrial and Enginerring Chemistry, 2010, 16(2): 52-55.
[10] Fan Guozhi, Fujita Shin-ichiro,?Zou Bing, et al.?Synthesis of diphenyl carbonate from phenol and carbon dioxide in the presence of carbon tetrachloride and zinc chloride. Catalysis Letters, 2009, 133(12): 280-287.
[11] Fan Guozhi?, Zhang Hanjun, Cheng Siqing, et al. Lewis acid promoted the Suzuki reaction using palladium chloride anchored on polymer as the catalyst. Australian Journal of Chemistry, 2008, 61(8): 610-614.
[12] Fan Guozhi?, Cheng Siqing, Zhu Mingfang, et al. Palladium chloride anchored on organic functionalized MCM-41 as a catalyst for the Heck reaction, Appl. Organomet. Chem., 2007, 21(8): 670-675.
[13] Fan Guozhi, Huang Jiao, Li Zhiqiang, et al. Palladium complexes anchored on silica modified by 1,2-diaminocyclohxane as catalyst for the oxidative carbonylation of phenol, Journal of Molecular Catalysis A: Chemstry, 2007, 267(1): 34-40.
[14] Fan Guozhi, Li Tao, Li Guangxing. Oxidative carbonylation of phenol to diphenyl carbonate catalyzed by palladium complexes bridged with N, N-ligands over functionalized silica, Appllied Organometallic Chemistry, 2006, 20(10): 656-662.
[15] Fan Guozhi, Li Tao, Zhu Dajiang, et al.PdCl2/organic-inorganic hybrid catalyst for oxidative carbonylation of phenol to diphenyl carbonate, Chinese Journal of Catalysis, 2005, 26(8): 625-627.
联系方式
E-mail: fgzcch@163.com; fgzcch@whpu.edu.cn.
范国枝,女,博士,武汉轻工大学化学与环境工程学院教授,硕士生导师。1994年毕业于青岛科技大学有机化工专业,获学士学位;1999年毕业于湖南大学应用化学专业,获硕士学位;2006年毕业于华中科技大学材料物理与化学专业,获博士学位;2009年3月-2009年9月在日本北海道大学从事访学研究。先后从事药物、精细化学品、新型催化材料合成及多相催化的研究工作,目前主要从事二氧化碳和生物质等可再生资源的催化转化与综合利用。主持或参与科技部863项目、湖南省科委重点资助项目、湖北省自然科学基金、湖北省教育厅科技项目、武汉市科技局重点科技攻关项目等科研课题20余项。迄今获中国发明专利3项,已在国内外期刊发表学术研究论文40多篇,其中SCI收录论文20余篇,担任《Tetrahedron Letters》、《Carbohydrate Polymers》、《Catalysis Communications》、《Journal of Clean Production》、《Journal of Applied Polymer Science》和《Research on Chemical Intermediates》等SCI期刊的审稿专家。
主要研究方向
资源化工:可再生资源二氧化碳与植物纤维素的化学转化及利用;
材料合成:纳米介孔材料、有机-无机杂化材料的制备及其催化性能研究;
绿色有机合成:反应原料、介质及催化剂的绿色化。
主要科研项目
[1] 二氧化碳化学转化制备氨基甲酸酯的催化体系及反应机理研究(湖北省教育厅科学技术研究计划重点项目,D**,负责人);
[2] 利用稻杆制备醋酸纤维素的关键技术研究(武汉市科技局重点科技攻关项目,**,负责人);
[3] 综合利用纤维素酸催化水解技术研究(湖北省科技厅公益性研究项目,2012DBAO20001,主要参与人);
[4] 超临界CO2/离子液体两相体系中清洁合成碳酸二苯酯(湖北省科技厅自然科学基金项目,2011CDC114,负责人);
[5] 超临界CO2/离子液体两相体系中一步合成碳酸二甲酯(湖北省教育厅优秀中青年人才项目,Q**,负责人);
[6] 自干漆在铜材底的附着力研究(佛山奥英琪涂料厂委托,2009,负责人);
[7] 有机-无机杂化材料负载钯配合物及其催化Suzuki反应(湖北省科技厅自然科学基金项目,2007ABA369,负责人);
[8] 对溴苯甲醚的合成(黄石美华化工有限公司委托,2006-2007,负责人);
[9] 有机官能化SBA-15负载钯配合物的制备及其催化Suzuki反应研究(华中科技大学材料化学与服役失效湖北省重点实验室开放课题,200703,负责人)。
发明专利
[1] 范国枝, 王敏, 宋光森, 廖崇静, 方涛. 二醋酸纤维素的制备方法(申请号**08.6).
[2] 范国枝,郑立辉,王敏,翟爱霞,胡廷平. 一种由二氧化碳和苯酚直接合成碳酸二苯酯的方法 (授权公开号: CN**B).
[3] 郑立辉, 范国枝, 王敏, 宋光森.?一种相变蜡脱色的方法(授权公开号: CN**B).
学术论文
以第一作者或通讯作者发表的代表性研究论文如下(*为通讯作者):
[1] Fan Guozhi?, Liao Chongjing, Fang Tao, et al. Amberlyst 15 as a new and reusable catalyst for the conversion of cellulose into cellulose acetate. Carbohydrate Polymers, 2014, 114 (11): 203-209.
[2] Liao Chongjing, Fang Tao, Luo Shanshan, Fan Guozhi?, Song Guangsen. H3PW12O40·4H2O as an efficient catalyst for the conversion of cellulose into partially substituted cellulose acetate. Journal of Applied Polymer Science, 2014 (Published online, DOI: 10.1002/APP.41212).
[3] Fan Guozhi?, Liao Chongjing, Fang Tao, et al. Hydrolysis of cellulose catalyzed by sulfonated poly(styrene-co-divinylbenzene) in the ionic liquid 1-n-butyl-3-methylimidazolium bromide. Fuel processing Technology, 2013, 16(12): 142-148.
[4] Fan Guozhi?, Wang Min, Liao Chongjing, et al. Isolation of cellulose from rice straw and its conversion into cellulose acetate catalyzed by phosphotungstic acid. Carbohydrate Polymers, 2013, 94 (4): 71-76.
[5] Fan Guozhi?, Wang Min, Duan Zhenxiao, et al. Synthesis of diphenyl carbonate from carbon dioxide, phenol, and carbon tetrachloride catalysed by ZnCl2 using trifluoromethanesulfonic acid as functional co-catalyst. Australian Journal of Chemistry, 2012, 65(12): 1667-1673.
[6] Fan Guozhi?, Duan Zhenxiao, Wang Min. Suzuki reaction catalyzed by Pd(II) anchord on polymer in supercriyical carbon dioxide. Appllied Mechanical Materials, 2012, 466-467: 216-219.
[7]Fan Guozhi?, Zhao Haitao, Duan Zhenxiao, et al. A novel method to synthesize diphenyl carbonate from carbon dioxide and phenol in the presence of methanol. Catalysis Science & Technology, 2011, 1(6): 1138-1141.
[8] Fan Guozhi?, Wang Zhigang, Zou Bing, et al. Synthesis of diphenyl carbonate from compressed carbon dioxide and phenol without use of organic solvent. Fuel Processing Technology, 2011, 92 (5): 1052-1055.
[9] Fan Guozhi?, Zou Bing, Cheng Siqing et al. Ligandless palladium supported on SiO2-TiO2 as effective catalyst for Suzuki reaction. Journal of Industrial and Enginerring Chemistry, 2010, 16(2): 52-55.
[10] Fan Guozhi, Fujita Shin-ichiro,?Zou Bing, et al.?Synthesis of diphenyl carbonate from phenol and carbon dioxide in the presence of carbon tetrachloride and zinc chloride. Catalysis Letters, 2009, 133(12): 280-287.
[11] Fan Guozhi?, Zhang Hanjun, Cheng Siqing, et al. Lewis acid promoted the Suzuki reaction using palladium chloride anchored on polymer as the catalyst. Australian Journal of Chemistry, 2008, 61(8): 610-614.
[12] Fan Guozhi?, Cheng Siqing, Zhu Mingfang, et al. Palladium chloride anchored on organic functionalized MCM-41 as a catalyst for the Heck reaction, Appl. Organomet. Chem., 2007, 21(8): 670-675.
[13] Fan Guozhi, Huang Jiao, Li Zhiqiang, et al. Palladium complexes anchored on silica modified by 1,2-diaminocyclohxane as catalyst for the oxidative carbonylation of phenol, Journal of Molecular Catalysis A: Chemstry, 2007, 267(1): 34-40.
[14] Fan Guozhi, Li Tao, Li Guangxing. Oxidative carbonylation of phenol to diphenyl carbonate catalyzed by palladium complexes bridged with N, N-ligands over functionalized silica, Appllied Organometallic Chemistry, 2006, 20(10): 656-662.
[15] Fan Guozhi, Li Tao, Zhu Dajiang, et al.PdCl2/organic-inorganic hybrid catalyst for oxidative carbonylation of phenol to diphenyl carbonate, Chinese Journal of Catalysis, 2005, 26(8): 625-627.
联系方式
E-mail: fgzcch@163.com; fgzcch@whpu.edu.cn.