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常压塔内的气相负荷是怎样分布的? 各位大侠, 常压塔内的气相负荷是怎样分布的? 查看更多 3个回答 . 2人已关注
磨煤机出口压力控制? 在SHELL煤气化工艺中, 磨煤机 出口压力的控制采用 氮气 补充和采用 空气 补充各有什么优缺点?在控制上各需要注意些什么?查看更多 10个回答 . 3人已关注
倒吸力到底有多大? 最近在做一个实验, 三口烧瓶 上接一只300mm长的 冷凝管 (基本竖直),出口用软管接缓冲瓶,后再用软 管通 入烧杯水中,反应产生氨气,烧瓶以油浴加热,内物料约占1/3多一点。实验结束时发生了倒吸将烧杯中的水吸入缓冲瓶中,这个也正常。但是居然烧瓶内的物料也有一部分吸出来了。这个高度大概怎么说也有400多mm的啊!分析来分析去也没有找出原因。 大家来讨论下呢,有没有遇到这种情况查看更多 1个回答 . 1人已关注
如何计算系统I/O点数? 请问 : 1、电调阀 2、点闸阀 3、 热电偶 4、 热电阻 5、 变频泵 的IO点怎么计算查看更多 35个回答 . 1人已关注
质谱分析在石化行业的应用? 质谱气体分析法在石化行业的应用,有兴趣的同学可以讨论讨论。查看更多 0个回答 . 5人已关注
化工工艺,化工分析? 广东现寻化学,化工工艺,急!急! 价格好谈, 网上可查,资料齐全。需要联系:15321495829 查看更多 0个回答 . 3人已关注
环评都没有通过,这个还有用吗? 9月28日,华陆科技EPC总承包的伊犁新天20亿方/年煤制天然气项目 甲烷化 装置实现全面中交。 该项目位于新疆伊犁伊宁市,于2013年3月获国家发改委“路条”,建设规模20.4亿方/年产能,产品将接入中石油西气东输管道。 http://www.nmtech.com.cn/xinwen_mhg_xx.asp?id=172347 查看更多 3个回答 . 2人已关注
柴油加氢开工时分馏系统循环升温过程的切水有什么温度、 ...? 柴油 加氢开工时分馏系统循环升温过程的切水有什么温度、时间。位置要求吗,求前辈指教查看更多 3个回答 . 2人已关注
为什么有的换热器由底部进料,而有的侧向进料? 为什么有的 换热器 由底部进料,而有的侧向进料?各有什么利弊呀?查看更多 5个回答 . 3人已关注
管道泵能否输送煤焦油? 本公司有一台闲置 管道泵 ,以前是输送 润滑油 的。现公司正好需要一台输送中温煤 焦油 的泵,此泵能否代替?泵口径80mm、电机7.5KW、转速2900/分钟、流量50M3/小时。中温煤焦油的运动粘度14mms.密度0.98. 另如果此泵电机转速太大,能否改用11kw、转速1400/分钟的电机。 真诚希望专家给以解答、谢谢! 查看更多 7个回答 . 2人已关注
注化专业考试一些物性数据题目上会告诉吗? 注化专业考试一些物性数据题目上会告诉吗?例如:NaOH的积分溶解热等。 查看更多 2个回答 . 2人已关注
容积设备内压比和外压比的问题? 螺杆压缩机 有内压比和外压比,那其它容积类 压缩机 有内压比和外压比之分吗?容积泵有有内压比和外压比之分吗? 查看更多 0个回答 . 2人已关注
通威股份陷囚徒困境 剥离多晶硅损失1.02亿元? 两头碰灰:通威腊月27挥泪斩掉 多晶硅 ,雷翻机构   从装入到剥离,永祥股份总共给通威带来9312.54万的回报,上市公司损失1.02亿   “我们董事长听到这个消息也大吃一惊。我们早料到通威会有动作,但没想到动作这么快,这么大,太意外了!”一家南方大型饲料企业高管对 理财周报记者表示。   2月11日,即农历腊月27。通威股份突然发布公告,将其持有的四川永祥1.54亿股股份全部转让给通威集团并抛出增发方案。   由此,深陷多晶硅**阵两年的通威股份最终痛下决心,扔弃鸡肋多晶硅项目。一时失去方向感的市场显得有些慌乱。当日,通威股份股价下挫 3.76%,以11.27元收盘。   机构等到过完年才回过神来。“通威选择这个时点,显然是想将影响降到最低做冷处理。年底分析师一堆事情要处理,等着过年,哪有这么多心 思理会!”一位总部在北京的知名券商分析师认为。   两年前高调进入多晶硅,两年后黯然离场。终点又回到起点,通威到现在才发觉。   通威式囚徒困境   究竟是什么迫使两年来一直以“饲料”+“新能源”双龙头形象示人的通威股份壮士断腕,回归主业?   长周期、高技术要求、高投入的多晶硅马拉松式竞赛让通威失去了耐心。“通威主营饲料,做多晶硅没有产业链优势。我估计通威多晶硅的成本 最乐观的估计也是在50到60美元上下,和价格线差不多”,一位大型光伏上市公司高管对理财周报记者表示。   而多晶硅“跌跌不休”的价格走势更坚定了通威撤离多晶硅的决心。“上游多晶硅环节产能过剩严重,仍未看到转暖迹象。多晶硅现货价还将继 续下跌。”中金分析师陈华表示。   多晶硅自装入上市公司以来,一直在拖累通威的整体业绩。2008年2月,通威股份以1.96亿的价格收购集团旗下永祥股份。通威股份最新公告显 示,两年来该项目合计仅贡献9312.54万利润,其2008年的毛利为9.54%,2009年降至0.18%。也就是说,从装入到剥离,永祥股份总共给通威带来 9312.54万的回报,仅达到当初收购价格的47.5%,多晶硅项目使上市公司损失1.02亿。   截止至2009年12月31日,永祥股份总资产为19.18亿,其中负债高达14.37亿,资产负债率高达74.92%,剥离箭在弦上,不得不发。   更重要的是,不专心是要付出代价的。申万分析师赵金厚认为,饲料业同行发展迅猛,尤其是专注做海产的后起之秀海大集团(34.76,-0.25,- 0.71%)近两年的高速增长及其上市以来所受到市场的关注,让通威这个昔日王者有些发憷。近几年来,通威股份相对同行增长速度有所放缓。   海大2009年业绩快报显示,海大2009年营业收入52.67亿,同比增长16.25%;净利润1.57亿,同比增长 19.96%,而通威近年来的净利润增长率在 2007年和2008年连续两年呈现负增长,2009年前三季度净利润增长率也仅13.22%。   而从资产规模扩张上看,海大集团目前总资产有29.4亿,同比增长147.90%,而通威总资产有58.9亿,资产规模是前者的两倍。尽管如此,通威 股份在市值上并没有太大优势。目前,通威股份的市值为81亿,而海大集团的市值也有75亿,两者差距不大。  多晶硅本就是个过河卒子?   “其实机构每次去调研的时候,都劝管理层将多晶硅资产剥离,因为它实在拖累了业绩。”天相投顾分析师叶峰的观点颇具有代表性。“我当时 本来就不是很赞成通威股份进军多晶硅!” 国泰君安秦军更是如此表示。   “饲料和多晶硅是两个没有交集的领域,没有产生应有的协同效应。机构要买的话,直接买一个纯饲料公司和一个纯多晶硅公司就行了,何必买 通威?”上述北京知名券商分析师表示。既然如此,通威股份当初何必兜如此大的弯子,如今再回原点?   “事实上,通威股份2008年将多晶硅装进来的时候,就存在问题。当时,通威正想搞员工股权激励和增发,需要抬高股价。而饲料行业是个低壁 垒行业,附加值比较低,想象空间小。那时候,多晶硅还比较有炒作概念,所以就被装了进来。但后来多晶硅的低迷走势让管理层始料不及,增发也 就不了了之”,上述不愿透露姓名的北京分析师透露。   而此次通威除了将永祥多晶硅项目剥离出上市公司外,同时还推出增发方案,募集资金将全部用于新建饲料项目和原料基地等主营业务项目。   “这次剥离很可能是为接下来的增发清除包袱。”上述分析师指出。理财周报记者就此求证通威股份董秘李高飞,对方表示,正处增发敏感时间 ,不便评论。 通威还要剥离?   “我们现在可以肯定的是咬定水产饲料老大地位不放松。今后肯定是加大对农牧的投入,增发主要就是投资农牧项目。”通威股份董秘李高飞一 再对理财周报记者强调,但他并不认为此前进入多晶硅是个错,“以当时的市场形势看,通威的选择并没有错。”   “我们要把握好发展的节奏。现在很多竞争对手发展速度就相当于2004、2005年的通威。前两年我们在饲料方面增长速度放缓,主要是因为我们 在完善产业链上用力。现在做铺垫,是为了以后有饭吃。”李高飞认为通威和竞争对手处于不同发展时期,不具备可比性。   但是,此时江湖已经风起云涌,昔日王者如何再展雄风?“近年来,饲料行业一批新型企业崛起,带动了行业技术和经营模式的进步,对通威有 一定的促进作用。”一位大型饲料行业董事长委婉地表示。   申万分析师赵金厚认为,现在通威股份选择的是“归核化”战略,通威未来将集中资源做大做强饲料业务,并围绕饲料主业进行产业链延伸。按 照这一战略思路,接下来通威可能会考虑剥离亏损严重的禽肉加工业务,该业务在2008年亏损近1亿,2009年亏损6000多万。查看更多 1个回答 . 1人已关注
多肽合成相关文献? Reviews and mini-reviews 1. “Instrumentation for automated solid-phase peptide synthesis.” Cammish,L.E.,Kates,S.A. In Fmoc Solid Phase Peptide Synthesis: A Practical Approach (Chan,W.,White,P.) Oxford University Press,Oxford,1998,in press. 2. “Peptide technologies: Nuts & bolts intelligence on practical industry solutions for peptede design,purification and production.” Kates,S.A. Current Drugs Ltd,1998,in press. 3. “Functionalized resins and linkers for solid-phase synthesis of small molecules.” Blackburn,C.,Albericio,F.,Kates,S.A. Drugs of the Future,1997,22,1007. 4. “Polyethylene glycol-containing supports for solid-phase synthesis of peptides and combinatorial organic libraries.” Barany,G.,Albericio,F.,Kates,S.A.,Kempe,M. In Chemistry and Biological Application of Polyethylene Glycol,ACS Symposium Series (Harris,J.M.,Zalipsky,S.,Eds.) American Chemical Society Books,Washington,DC,1997,239. 5. “Solid-phase peptide and small molecule synthesis.” Blackburn,C.,Albericio,F.,Kates,S.A. In Recent Research Developments in Organic Chemistry (Pandalai,S.G.,Ed.) Transworld Research Network,India 1997,1,477. 6. “Solid-phase synthesis of cyclic homodetic peptides.” Blackburn,C.,Kates,S.A. In Methods of Enzymology (Fields,G.B.,Ed.) Academic Press,New York,1997,289,175. 7. “N-[(dimethylamino)-1H-1,2,3-triazolo[4,5-b]pyridin-1-ylmethylene]-N-methylmethan- aminium hexafluorophosphate N-oxide.” Albericio,F.,Kates,S.A.,Carpino,L.A. In Encyclopedia of Reagents for Organic Synthesis (Paquette,L.A.,Ed.) Wiley, New York,1996,3,2026. 8. “3-Hydroxy-3H-1,2,3- triazolo[4,5-b]pyridin.” Kates,S.A.,Albericio,F,Carpino,L.A. In Encyclopedia of Reagents for Organic Synthesis (Paquette,L.A.,Ed.) Wiley, New York,1996,4,2784. 9. “Azidotris(dimethylamino)phosphonium hexafluorophosphaste.” Albericio,F.,Kates,S.A. In Encyclopedia of Reagents for Organic Synthesis (Paquette,L.A.,Ed.) Wiley, New York,1996,1,224. 10. “1,1’-Axobis-1-cyclohexanenitrile(ACN).” Kates,S.A.,Albericio,F. In Encyclopedia of Reagents for Organic Synthesis (Paquette,L.A.,Ed.) Wiley, New York,1996,1,228. 11. “1-Phenylsulfonyl-1H-tetrazole.” Eritja,R.,Kates,S.A.,Albericio,F. In Encyclopedia of Reagents for Organic Synthesis (Paquette,L.A.,Ed.) Wiley, New York,1996,6,4058. 12. “1-benzotriazolyl diethyl phosphate.” Albericio,F. Kates,S.A. In Encyclopedia of Reagents for Organic Synthesis (Paquette,L.A.,Ed.) Wiley, New York,1996,1,300. 13. “O-Benzoriazol-1-yl-N,N,N’,N’-tetramethyluronium hexafluorophosphate (HBTU)”. Albericio,F.,Kates,S.A. In Encyclopedia of Reagents for Organic Synthesis (Paquette,L.A.,Ed.) Wiley, New York,1996,1,304. 14. “4,4’-Bis(2-amino-6-methylpyrimidyl) disulfide.” Albericio,F.,Kates,S.A.,Eritja,R. In Encyclopedia of Reagents for Organic Synthesis (Paquette,L.A.,Ed.) Wiley, New York,1996,1,421. 15. “Solid-phase synthesis of cyclic peptides.” Kates,S.A.,Solé,N.A.,Albericio,F.A.,Barany,G. In Peptides: design,synthesis and biological activity (Basava,C.,Anantharamaiah,G.M.Eds.) Birkhauser,Boston(Massachusetts),1994,39. 16. “Synthetic Peptides Come of Age.” Fishman,J.B.,Kates,S.A. Biomedical Products Review,1995,20,52. Article in refereed journals 1. “Continuous-flow solid-phase peptide sysnthesis using polystryrene resins.” Kates,S.A.,Cammish,L.E.,Albericio,F.J. Peptide Science,1998,in press. 2. “On the uniformity of product quality for peptides generated in service laboratories: Peptides containing phosphorylated tyrosone residues.” Bonewald,L.F.,Bibbs,L.,Kates,S.A.,Khatri,A.,McMurray,J.S.,Medzihradszky,K.F.,Weintraub,S.T. J. Peptide Science,1998,in press. 3. “Improved synthesis and purification of Alzeimer’s Ab 1-42 and analogs.” Milton,S.C.F.,de Lisle Milton,R.C.,Kates,S.A.,Glabe,C. Letters in peptide Science,1998,in press. 4. “High load” Polyethylene glycol-polystryrene (PEG-PS) graft supports for solid-phase synthesis.” Kates,S.A.,Blackburn,C.,McGuinness,B.F.,Griffin,G.W.,Solé,N.A.,Barany,G.,Albericio,F. Biopolymers: Peptide Science,1998,in press. 5. “On the Use of Onium Salt-Based Coupling Reagents in Peptide Synthesis” Albericio,F.,Bofill,J.M.,Carpino,L.A.,El-Faham,A.,Kates,S.A. J.Org. Chem. 1998,in press. 6. “Automated,high productivity purification and analysis of synthetic peptides.” Londo,T.R.,Kehoe,T.,Kates,S.A.,Hantman,S.,Gordon,N.F. Letters in Peptide Science,1998,in press. 7. “On the use of PyAOP,a phosphonium salt derived from HOAt,in solid-phase peptide synthesis.” Albericio,F.,Cases,M.,Alsina,J,.,Triolo,S.A.,Carpino,L.A.,Kates,S.A. Tetrahedron Lett.,1997,38,4853. 8. “N-Dependent transcriptional antitermination in phage λis mediated by an inducible RNA bridge.” Su,L.,Radek,J.T.,Labeots,L.A.,Hermanto,P.,Chem,H.,Nakagawa,S.,Zhao,M.,Kates,S.A.,Weiss,M.A. Genes & Development,1997,11,2214. 9. “Optimization of the synthesis of peptide combinatorial libraries (SPCLs) using a one-pot method.” Herman,L.W.,Tarr,G.,Kates,S.A. Molecular Diveristy,1996,1,147. 10. “Solid-phase synthesis of angiotensin converting enzyme (ACE) inhibtor libraries derived from N-alkylated dipeptide.” Blackburn,C.,Pingali,A.,Kehoe,T.,Herman,L.W.,Wang,H.,Kates,S.A. Bioorg. Chem. Med. Lett. 1997,7,823. 11. “N-Piperidylalanine formation during the preparation of C-terminal Cys peptides with an Fmoc/tBu strategy.” Lukszo,J.,Patterson,D.,Albericio,F.,Kates,S.A. Lett. Peptide Science,1996,3,157. 12. “Labeling of synthetic biomolecules with biotin and fluorescein by active esters of 1-phenylpyarzolin-5-ones.” Kremsky,J.N.,Pluskal,M.,Casey,S.,Perry-O’Keefe,H.,Sinha,N.D.,Kates,S.A. Tetrahedron Lett. 1996,37,4313. 13. “Preparation and applications of xanthenylamide (XAL) handles for solid-phase synthesis of C-terminal peptide amides under particularly mild conditions.” Han,Y,.,Bontems,S.L.,Hegyes,P.,Munson,M.C.,Minor,C.A.,Kates,S.A.,Albericio,F.,Barany,G. J. Org. Chem.,1996,61,6326. 14. “Optimized preparation of deca(L-alanyl)-L-valinamide by 9-fluorenylmethyloxycarbonyl (Fmoc) Solid-phase synthesis on polyethylene glycol-polystyrene (PEG-PS) graft supports,with 1,8-diazobicyclo[5.4.0]-undec-7-ene (DBU) deprotection.” Kates,S.A.,Solé,N.A.,beyermann,M.,Barany,G.,Albericio,F. Peptide Res.,1996,9,106. 15. “Novel carbozylic acid and carboxamide protective groups based on the exceptional stablization of the cyclopropylmethyl cation.” Carpino,L.A.,Chao,H.-G.,Ghassemi,S.,Mansour,E.M.E.,Riemer,C.,Warrass,R.,Sadat-Aalaee,D.,Truran,G.A.,Imazumi,H.,El-Faham,A.,Ionescu,D.,Ismail,M.,Kowaleski,T.L.,Han,C.H.,Wenschuh,H.,Beyermann,M.,Bienert,M.,Shroff,H.,Alericio,F.,Triolo,S.A.,Solé,N.A.,Kates,S.A,J. Org. Chem.,1995,60,7718. 16. “Rearrangement of Glu(OtBu) and Asp(OtBu)-containing peptides upon fluoride treatment in solid-phase synthesis.” Kates,S.A.,Albericio,F. Lett.Pep.Sci.,1995,1,213. 17. “Structural studies of reagents for peptide bond formation: Crystal and molecular structures of HBTU and HATU.” Abdelmoty,I.,Albericio,F.,Carpino,L.A,Foxman,B.M.,Kates,S.A. Lett. Peptide Science 1994,1,57. 18. “Solid-phase N-glycopeptide synthesis using allyl side-chain protected Fmoc-amino acids.” Kates,S.A.,De la Torre,B.G.,Erijua,R.,Albericio,F. Tetrahedron Lett. 1994,35,1033. 19. “Automate allyl deprotection for continuous-flow synthesis of cyclic and branch peptide.” Kates,S.A.,Daniels,S.B.,Albericio,F. Anal. Biochem. 1993,212,303. 20. “A novel,convenient,three-dimensional orthogonal strategy for solid-phase synthesis of cyclic peptides.” Kates,S.A.,Solé,N.A.,Johnson,C.R.,Hudson,D.,Barany,G.,Albericio,F. Tetrahedron Lett. 1993,34,1549. 21. “The development of high-performance liquid chromatographic analysis of allyl and allyloxycarbonyl side-chain-protected phenylthiohydanoin amino acids.” Fields,C.G.,Loffet,A.,Kates,S.A.,Fields,G.B. Anal. Biochem. 1992,203,245. 22. “Manganese (Ⅲ) based oxidative free-radical cyclization of unsaturated β-keto esters,1,3-diketones and malonate diesters.” Kates,S.A.,Dombroski,M.A.,Snider,B.B. J.Org.Chem.1990,55,2427. 23. “Manganese (Ⅲ) based oxidative free-radical tandem and triple cyclizations.” Dombroski,M.A.,Kates,S.A.,Snider,B.B. J.Am.Chem.Soc. 1990,112,2759. 24. “Formation of seven- and eight-membered rings by manganese (Ⅲ) based oxidative free radical cyclizations.” Merritt,J.E.,Sasson,M.,Kates,S.A.,Snider,B.B. Tetrahedron Lett. 1988,29,5209. 25. “Mechanism of manganese (Ⅲ) based oxidative ofβ-ketoesters.” Snider,B.B.,Patricia,J.J.,Kates,S.A. J.Org.Chem. 1988,53,2137. 26. “Manganese (Ⅲ) based oxidative free-radical cyclization. 3.Polycyclization reactions proceeding through secondary radicals.” Mohan,R.,Kates,S.A.,Dombroski,M.A.,Snider,B.B. Tetrahedron Lett. 1987,28,845. 27. “Manganese (Ⅲ) based oxidative free-radical cyclization. 2.Polycyclization reactions proceeding through tertiary cations.” Snider,B.B.,Mohan,R.,Kates,S.A. Tetrahedron Lett. 1987,28,841. 28. “Manganese (Ⅲ) based oxidative free-radical cyclization. Synthesis of (±)-podocarpic acid.” Snider,B.B.,Mohan,R.,Kates,S.A. J.Org.Chem. 1985,50,3659. Other articles 1. “A comparison of solid-phase techniques for the construction of chemokines.” McNamara,J.F.,Lombardo,H.,Pillai,S.K.,Jensen,I.,Kates,S.A. In Peptides 1998 Proceedings of the Twenty-Fifth European Peptide Symposium (Bajusz,S.,Judecz,F.,Eds.) Mayflower Worldwide Limited, Birmingham,England,1999,in press. 2. “Design and synthesis of cyclic peptides for iron-sulfur cluster assembly and encapsulation.” Segal,B.M.,McNamara,J.F.,Jensen,I.,Kates,S.A.,Holm,R.H. In Peptides 1998 Proceedings of the Twenty-Fifth European Peptide Symposium (Bajusz,S.,Judecz,F.,Eds.) Mayflower Worldwide Limited, Birmingham,England,1999,in press. 3. De novo peptide design as an approach for the synthesis of a sturctural representation of the center A active site of carbon monoxide dehydrogenase/acetyl-CoA synthase.” Laplaza,C.E.,McNamara,J.F.,Jensen,I.,Kates,S.A.,Holm,R.H. In Peptides 1998 Proceedings of the Twenty-Fifth European Peptide Symposium (Bajusz,S.,Judecz,F.,Eds.) Mayflower Worldwide Limited, Birmingham,England,1999,in press. 4. “Design and synthesis of cyclic cysteine-containing peptides for transition metal incorporation.” Nivorozhkin,A.L.,Kates,S.A.,Holm,R.H. In Peptides 1998 proceedings of the Twenty-Fifth European Peptide Symposium (Bajusz,S.,Judecz,F.,Eds.) Mayflower Worldwide Limited, Birmingham,England,1998,in press. 5. “Solid-phase synthesis of “head-to-tail” cyclic and C-terminal modified peptides.” Albericio,F.,Frieden,A.,Del Fresno,M.,Royo,M.,Alsina,J.,Jensen,K.J.,Kates,S.A.,Barany,G. In Innovation and Perspectives in Solid Phase Synthesis and Combinatorial Chemical Libraries (Epton,R.,ed.) Mayflower Worldwide Limited, Birmingham,England,1998,in press. 6. “Homodetic cyclic peptides via solid-phase synthesis.” Blackburn,C.,Kates,S.A. In Innovation and Perspectives in Solid Phase Synthesis and Combinatorial Chemical Libraries (Epton,R.,ed.) Mayflower Worldwide Limited, Birmingham,England,1998,in press. 7. “Handles for solid-phase chemistry: Progress from peptide to small molecule synthesis.” Blackburn,C.,Barany,G.,Albericio,F.,Kates,S.A. In Innovation and Perspectives in Solid Phase Synthesis and Combinatorial Chemical Libraries (Epton,R.,ed.) Mayflower Worldwide Limited, Birmingham,England,1998,in press. 8. “A comparison of solid supports for PNA synthesis.” Casale,R.A.,Paul,C.H.,Jensen,I.S.,Moyer,M.L.,Kates,S.A.,Egholm,M. In Innovation and Perspectives in Solid Phase Synthesis and Combinatorial Chemical Libraries (Epton,R.,ed.) Mayflower Worldwide Limited, Birmingham,England,1998,in press. 9. “Backbone amide Linker (BAL) for solid-phase synthesis of 2,5-piperazinediones (DKP),useful scaffolds for combinatorial chemistry.” Albericio,F.,del Fresnl,M.,Alsina,J.,Frieden,A.,Royo,M.,Jensen,K.J.,Kates,S.A.,Barany,G. In Peptides-Chemistry and Biology: Proceedings of the Fourteenth American Peptide Symposium (Tam,J.) 1998,Escom,in press. 10. “Encoding schemes for application with polyethylene glycol-polystyrene graft (PEG-PS) supports in solid-phase peptide and small molecule synthesis.” Kates,S.A.,Hines,W.H.,Kelley,M.A.,Lynch,P.,Albericio,F.,Barany,G. In Peptides-Chemistry and Biology: Proceedings of the Fourteenth American Peptide Symposium (Tam,J.) 1998,Escom,in press. 11. “1997 ABRF peptide synthesis research committee study on a peptide containing a phosphorylated tyrosine.” Bonewald,L.F.,Bibbs,L.,Kates,S.A.,Khatri,A.,Medzihradxzky,K.F.,McMurray,J.S.,Weintraub,S. In Peptides-Chemistry and Biology: Proceedings of the Fourteenth American Peptide Symposium (Tam,J.) 1998,Escom,in press. 12. “Polyethylene glycol-containing supports for solid-phase synthesis of peptides and combinatorial organic libraries.” Barany,G.,Albericio,F.,Kates,S.A.,Kempe,M. Polymer Preprints Am. Chem. Soc. Div. Polym. Chem.,1997,38,587. 13. “Synthesis of Alzheimer’s (1-42) Aβ-amyloid peptide with preformed Fmoc-aminoacyl fluorides.” Milton,S.C.F.,Milton,R.C.d.L.,Kates,S.A.,Glabe,C. In Techniques in Protein Chemistry Ⅷ (Marshak,D.R.,Ed.) 1997,Academic Press,San Diego,CA,865. 14. “Recent aspects of the use of tetramethylfluorofomamidinium hexafluorophosphate (TFFH) as a convenient peptide coupling reagent.” Triolo, S.A., Ionescu, D., Wenschuh, H., Solé, N.A., El-Faham, A., Carpino, L.A., Kates, S.A. In Peptides 1996 Proceedings of the Twenty-Fourth European Peptide Symposium (Ramage, R., Ed.) 1997, Mayflower Worldwide Limited, Birmingham, England, 839. 15. “PioneerTM: A continuous-flow peptide synthesis system.” Daniels, S.B., Solé, N.A., Hantman, S.F., Gibney, B.R., Rabanal, F., Kates, S.A., In Peptides 1996 Proceedings of the Twenty-Fourth European Peptide Symposium (Ramage, R., Ed.) 1997, Mayflower Worldwide Limited, Birmingham, England, 323. 16. “Crystal and solution structures of HBPyU and HAPyU.” Henklein, P., Costisella, B., Wray, V., Domke, T., Carpino, L.A., El-Faham, A. Kates, S.A., Abdelmoty, I., Foxman, B.M. In Peptides 1996 Proceedings of the Twenty-Fourth European Peptide Symposium (Ramage, R., Ed.) 1997, Mayflower Worldwide Limited, Birmingham, England, 465. 17. “New coupling techniques for solid-phase peptide synthesis.” Kates, S.A., Carpino, L.A., Albercio, F. In Peptides-Chemistry and Biology: Proceedings of the Fourteenth American Peptide Symposium (Kaumaya, P.T.P., Hodges, R.S., Eds.) 1996, Mayflowers Worldwide Limited, Birmingham, England, 893. 18. “Recent developments in azabenzotriazole-based coupling reagents for use in solid-phase peptide synthesis: PyAOP and HAPyU.” Kates, S.A., Triolo, S.A., Diekmann, E., Carpino, L.A., El-Faham, A., Ionescu, D., Albericio, F. In Peptides-Chemistry and Biology: Proceedings of the Fourteenth American Peptide Symposium (Kaumaya, P.T.P., Hodges, R.S., Eds.) 1996, Mayflowers Worldwide Limited, Birmingham, England, 115. 19. “High load polyethylene glycol-polystyrene graft supports for solid-phase peptide synthesis.” McGuinness, B.F., Kates, S.A., Grifin, G.W., Herman, L.W., Solé, N.A., Vágner, J., Albercio, F., Barany, G. In Peptides-Chemistry and Biology: Proceedings of the Fourteenth American Peptide Symposium (Kaumaya, P.T.P., Hodges, R.S., Eds.) 1996, Mayflowers Worldwide Limited, Birmingham, England, 125. 20. “On the use of novel coupling reagents for solid-phasepeptide synthesis.” Kates, S.A., Diekmann, E., El-Faham, A., Herman, L.W., Ionescu, D., McGuinness, B.F., Triolo, S.A., Albericio, F., Carpino, L.A., In Techniques in Protein Chemistry Ⅶ (Marshak, D.R., Ed.) 1996, Academic Press, San Diego, CA, 515. 21. “Advances in the use of onium-based coupling reagents: application for solid-phase peptide synthesis and combinatorial libraries.” Kates, S.A., Triolo, S.A., Griffin, G.W., Herman, L.W., Tarr, G., Solé, N.A., Diekmann, E., El-Faham, A., Ionescu, I., Albericio, F., Carpino, L.A. In Innovation and Perspectives in Solid Phase Synthesis and Combinatorial Chemical Librariers (Epton, R., Ed.) 1997 Mayflower Worldwide Limited, Birmingham, England, 41. 22. “Use of XAL handles for solid-phase synthesis of peptide amides.” Kates, S.A., Minor, C.A., Han, Y., Albericio, F., Barany, G. In Peptides 1994: Proceedings of the Twenty-third European Peptide Symposium (Maia, H.L.S., Ed.) 1995, Escom, Science Publishers, Leiden, The Netherlands, 262. 23. Practival Protocols for efficient solid-phasepeptide synthesis. Minimization of side-reactions.” Kates, S.A., Minor, C.A., Shroff, H., Haaseth, R.C., Triolo, S., El-Faham, A., Carpino, L.A., Albericio, F. In Peptides 1994: Proceedings of the Twenty-third European Peptide Symposium (Maia, H.L.S., Ed.) 1995, Escom, Science Publishers, Leiden, The Netherlands, 248. 24. “Polyethylene glycol-polystryrene (PEG_PS) supports for Boc solid-phase peptide and PNA synthesis strategies.” Albericio, F,. Bacardit, J., Barany, G., Coull, J.M., Egholm, M., Giralt, E., Griffin, G.W., Kates, S.A., Nicolás, E., Solé, N.A. In Peptides 1994: Proceedings of the Twenty-third European Peptide Symposium (Maia, H.L.S., Ed.) 1995, Escom, Science Publishers, Leiden, The Netherlands, 271. 25. “Azabenzotriazole (HOAt) derivatives as superior coupling reagents for peptide synthesis.” Albericio, f., Abdelmoty, I., Bofill, J.M., Carpine, L.A., El-Faham,A., Foxman, B.M., Gairí, M. Giralt, E., Griffin, G.W., Kates, S.A., Lloyd-Williams, P., Minor, C.A., Scarmoutzos, L.W., Shroff, H., Triolo, S., henschuh, H. In Peptides 1994: Proceedings of the Twenty-third European Peptide Symposium (Maia, H.L.S., Ed.) 1995, Escom, Science Publishers, Leiden, The Netherlands, 23. 26. “New approaches for extending the scope of solid-phase peptide synthesis.” Carpino, L.A., El-Faham. A., Truran, G.A., Minor, C.A., Kates, S.A., Griffin, G.W., Shroff, H., Triolo, S.A., Albericio,F. In Innovation and perspectives in Solid Phase Synthesis-Peptides, Proteins and Nucleic Acids (Epton, R., Ed.) 1994 Mayflower Worldwide Limited, Birmingham, England, 95. 27. “Orthogonal Solid-phase synthesis of bicyclic peptides.” Solé, N.A., Kates, S.A., Albericio, F., Barany, G. In Innovation and perspectives in Solid Phase Synthesis-Peptides, Proteins and Nucleic Acids (Epton, R., Ed.) 1994 Mayflower Worldwide Limited, Birmingham, England, 105. 28. “Orthogonal Solid-phase synthesis of bicyclic analogues of αconotoxin SI.” Solé, N.A., Kates, S.A., Albericio, F., Barany, G. In Innovation and perspectives in Solid Phase Synthesis-Peptides, Proteins and Nucleic Acids (Epton, R., Ed.) 1994 Mayflower Worldwide Limited, Birmingham, England, 93. 29. “Automated allyl chemistry forsolid-phase peptide synthesis: Applications to cyclic and Branched peptides.” Kates, S.A., Daniels, B.B., Solé, N.A., Barany, G., Albericio, F. In Peptides-Chemistry and Biology: proceedings of the Thirteenth American Peptide symposium (Hodges, R., S., Smith J.A., Eds.) 1994 Escom, Science Publishers, Leiden, The Netherlands, 113. 30. “Azabenzotriazole-based coupling reagents in solid-phase peptide sythesis.” Carpino, L.A., El-Faham, A., Truran, G.A., Triolo, S.A., Shroff, H., Griffin, G.W., Minor, C.A., Kates, S.A., Albericio, F. In Peptides-Chemistry and Biology: proceedings of the Thirteenth American Peptide symposium (Hodges, R., S., Smith J.A., Eds.) 1994 Escom, Science Publishers, Leiden, The Netherlands,124. 31. “Allyl-based orthogonal solid-phase peptide synthesis.” Albericio, F., Barany, G., Fields, G.B., Hudson, D., Kates, S.K., Lyttle, M.H., Sole N.A. In Peptides 1992: Proceedings of the Twenty-second European Peptide Symposium (Schneider, C.H., Eberle, Eds.) 1993, Escom , Science Publishers, Leiden, The Netherlands, 191. 32. “Novel polyethylene glycol-polystyrene (PEG-PS) graft supports for solid-phase peptide synthesis.” Barany, G., Albericio, F., Sole, N.A., Griffin, G.W., Kates, A.A., Hudson, D. In Peptides 1992: Proceedings of the Twenty-second European Peptide Symposium (Schneider, C.H., Eberle, Eds.) 1993, Escom , Science Publishers, Leiden, The Netherlands, 267. 33. “New approaches in solid-phase peptide synthesis.” Albericio, F., Carpino, L.A., Daniels, S.B., El-Faham, A., Fukuda, H., Griffin, G.W., Kates, S.A., Minor, C.A., Shroff, H.N., Triolo, S.A., Truran, G.T., Yamabe, K., In “Peptide Chemistry 1993: Proceedings of the 31th Symposium on Peptide Chemistry (Okada, Y, Ed.) 1994, Protein Research Foundation, 121. Patents: “Automated allyl deprotection in solid-phase synthesis.” Albericio, F., Kates, S.A. submitted 1993, awarded 1998. Abstracts: 1. Susumu Funakoshi, G. William Griffin, Derek Hudson, Steven A. Kates, Mattew H. Lyttle, Hitesh Shroff, Nuria A. Solé, and Salvatore A. Triolo. Effective strategies for chemical synthesis of peptides. Twenty-second European Peptide Symposium-Millipore Forum. September, 1992, Interlaked (Switzerland). 2. Fernando Albericio, George Barany, Gregg. B. Fields, Hiroyuki Fukuda, Susumu Funakoshi, Hiroyuki Fukuda, Nobutaka Fjjii, Fernando Albericio, Steven A, Kates, Vishnu C. Solan, and Salvatore A. Triolo. Biolinker: An affinity purification procedure for synthetic peptides. Thirteenth American Peptide Symposium. June, 1993. Edmonton (Canada). 3. Steven A. Kates, G. William Griffin, Charles A. Minor, Nuria A. Solé, George Barany, and Fernando Albericio. New methods for the solid-phase synthesis of cyclic, branched, and multiple antigenic (MAP) peptides. Seven Symposium of the Protein Society. July, 1993, San Diego (California). 4. Fernando Albericio, Louis A. Carpino, Ayman El-Faham, G. William Griffin ,Steve A. Kates, Charles A. Minor, Hitesh N. Shroff, Salvatore A Triolo, George A. Truran. Science Innovation ’93 of the American Association for the Advancement of Science. August, 1993. Boston (Massachusetts.) 5. Steven A. Kates, G. William Griffin, Yonxin Han, Brian F. McGuinness, Joan McNeil, Charles A. Minor, Nuriá A. Solé, Michael F. Songster, Josef Vágner, Fernando Albericio, and George Barany. Improved handles and supports for solid-phase peptide synthesis. Ninth symposium of the Protein Society. July, 1995. Boston (Massachusetts). 6. Michael F. Songster, Steven A. Kates, Fernando Albericio, and George Barany. Use of HAL (hypersensitive acid-labile) handle for solid-phase synthesis of peptide acids. Fourteenth American Peptide Symposium June 1995, Columbus (Ohio). 7. Iman Abdelmoty, Fernando Albericio, Josep M. Bofill, Burce M.Foxman, and Steven A. Kates. The solid state structures of HATU and HBTU: A reexamination. Fourteenth American Peptide Symposium June 1995, Columbus (Ohio). 8. Steven A. Kates, Solid-phase synthesis of cyclic peptides. Peptide Synthesis Workshop Tenth Annual Meeting of the Association of Biomolecular Resource Facilities, July 1995, Boston (Massachusetts). 9. Aruna Pingali, Christopher Blackburn, Lee W. Herman, Hongqi Wang, Steven A. Kates. Solid-phase synthesis and affinity selection of ACE inhibitor libraries derived from N-alkylated dipeptides. First Annual Solid-Phase Synthesis. Developing Small Molecule Libraries, Cambridge HealthTech Institute, February 1996, San Diego (California). 10. Christopher Blackburn, Lee W. Herman, Nuriá A. Solé, Salvatore A. Triolo, Steven A. Kates. Reagents for solid-phase peptide and small molecule combinatorial synthesis. First Annual Solid-Phase Synthesis, Developing Small Molecule Libraries, Cambridge HealthTech Institute, February 1996, San Diego (California). 11. Steven A. Kate, Christopher Blackburn, Lee W. Herman, Elizbeth A. Luchow, Savatore A. Triolo. Onium-based coupling reagent and high-load polyethylene glycol-polystyrene (PEG-PG) supports: Tools for solid-phase peptide and small molecule combinatorial synthesis. Associaiton of Biomolecular Resource Facilities, April 1996, San Francisco, (California). 12. Christopher Blackburn, Lee W. Herman, Nuriá A. Solé, Salvatore A. Triolo, Steven A. Kates. Reagents for solution and solid-phase peptide and small molecule combinatorial synthesis. Tenth Symposium of the Protein Society, August,1996, San Jose (California). 13. Steven A. Kates. Solid-phase Organic Chemistry: A Peptide Chemist’s Perspective. Second Annual Solid-Phase Synthesis, Developing Small Molecule Libraries, Cambridge Healthtech Institute, February 1997, San Diego (California). 14. Steven A. Kates. Applications on onium-based coupling reagent for peptide and organic solution/solid-phase method. Peptide Technologies, Nuts & Bolts Intelligence on Practical Industry Solutions for Peptide Design, Purification and production, International Business Communications, March 1998, Las Vegas (Nevada). 15. Sasi K. Pillai, Steven A. Kates, Subhasish Purkayastha. TFFH, A versatile reagent for organic transformations in solid- and solution-phase. 215th American National Meeting March查看更多 0个回答 . 3人已关注
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职业:浙江安联检测技术服务有限公司 - 给排水工程师
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