{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"钒酸钇原料(熔料)在高温氧气氛中钒的氧化物具有预蒸发,而在高温缺氧的气氛中高价钒离子(V5+)会分解成低价钒离子(V4+或V3+)以及在晶体生长过程中存在着掺质Nd3+的分凝效应等特性.因此,在原料合成中,除了强调原料合成规范化(保纯性、均匀性及重复性)外,还要对初始原料及添加料的组分和掺质浓度进行适度调节.其目的是在熔体剩料多次重复使用时,所生长的晶体中Nd3+浓度基本不变,而且所生长的晶体能保持单相生长.","authors":[{"authorName":"李敢生","id":"58ef3fcc-7898-4be9-b707-02224cb703cc","originalAuthorName":"李敢生"},{"authorName":"位民","id":"df34a804-ff08-4033-b884-2b8bbfd3f600","originalAuthorName":"位民"},{"authorName":"诸月梅","id":"13571a37-7c9e-4de4-984d-16f542440e46","originalAuthorName":"诸月梅"},{"authorName":"吴喜泉","id":"5238268b-f679-4003-9d7e-7d264a4c0ae9","originalAuthorName":"吴喜泉"},{"authorName":"俞振森","id":"a7ef8003-c63d-48b5-85f8-70edd32fcfeb","originalAuthorName":"俞振森"},{"authorName":"滕硕","id":"a2d20326-d8e0-4502-91d0-9ddcfdf9cec8","originalAuthorName":"滕硕"},{"authorName":"王建国","id":"b13acf4c-180a-4827-b938-d975626bf184","originalAuthorName":"王建国"}],"doi":"10.3969/j.issn.1000-985X.1998.04.008","fpage":"339","id":"51143da2-0fce-4293-b26d-407f653f1d54","issue":"4","journal":{"abbrevTitle":"RGJTXB","coverImgSrc":"journal/img/cover/RGJTXB.jpg","id":"57","issnPpub":"1000-985X","publisherId":"RGJTXB","title":"人工晶体学报"},"keywords":[{"id":"f5b38ec0-4a94-4f5b-bcc9-45a375c5c09c","keyword":"Nd3+:YVO4","originalKeyword":"Nd3+:YVO4"},{"id":"302cbe0d-97f2-46f8-9749-c56ab5389b44","keyword":"原料合成","originalKeyword":"原料合成"},{"id":"877ef470-0435-46dc-b8a5-4527b9b2818b","keyword":"熔体特性","originalKeyword":"熔体特性"},{"id":"9e0f406a-3708-47cb-8ab1-fa1c44d613f0","keyword":"初始料","originalKeyword":"初始料"},{"id":"de4c5ce4-052f-4b40-8118-ea9c1d94f10f","keyword":"添加料","originalKeyword":"添加料"}],"language":"zh","publisherId":"rgjtxb98199804008","title":"掺钕钒酸钇原料合成与熔体特性的关系","volume":"27","year":"1998"},{"abstractinfo":"采用硝酸脱水合成的原料,异型大口径铱坩埚,近平界面生长技术以及真空增氧退火工艺,成功地生长出直径为30~35mm,长度为50mm完整透明,无散射中心,无核芯的YVO4单晶.","authors":[{"authorName":"李敢生","id":"0ee7703c-cf60-461b-9996-0b15dead60c2","originalAuthorName":"李敢生"},{"authorName":"吴喜泉","id":"ef13ac13-ff39-4ddf-b020-4056224880f1","originalAuthorName":"吴喜泉"},{"authorName":"位民","id":"b4c76193-00e5-4a7f-841b-a53ae1a04d20","originalAuthorName":"位民"},{"authorName":"诸月梅","id":"277699aa-8030-48ff-86e2-06990000134b","originalAuthorName":"诸月梅"},{"authorName":"俞振森","id":"a7acdc99-307c-4dcc-b7e0-3e6db6c3bea6","originalAuthorName":"俞振森"},{"authorName":"滕硕","id":"02b7967d-44c1-4218-aec2-d3b066460463","originalAuthorName":"滕硕"},{"authorName":"王建国","id":"c79e677d-b9ab-470e-8285-5f6b80978bd7","originalAuthorName":"王建国"}],"doi":"10.3969/j.issn.1000-985X.1999.01.005","fpage":"27","id":"6be22dcd-1dd1-43ee-ab68-d656bf8b81c9","issue":"1","journal":{"abbrevTitle":"RGJTXB","coverImgSrc":"journal/img/cover/RGJTXB.jpg","id":"57","issnPpub":"1000-985X","publisherId":"RGJTXB","title":"人工晶体学报"},"keywords":[{"id":"453746c1-e33a-48fb-800e-4cf5a4f6f115","keyword":"钒酸钇(YVO4)双折射晶体","originalKeyword":"钒酸钇(YVO4)双折射晶体"},{"id":"b090b3cd-602b-4cfb-ae6f-ceebb4ab4176","keyword":"原料合成","originalKeyword":"原料合成"},{"id":"1cb0f93b-e98c-41f9-89a9-a7152a4dad80","keyword":"平界面生长","originalKeyword":"平界面生长"},{"id":"83acb1ac-31d7-449c-81a0-fa0ae4264fb4","keyword":"真空增氧技术","originalKeyword":"真空增氧技术"},{"id":"381496a6-7d55-4b98-9a43-a0983a3880f7","keyword":"引上法晶体生长","originalKeyword":"引上法晶体生长"}],"language":"zh","publisherId":"rgjtxb98199901005","title":"大尺寸优质钒酸钇(YVO4)双折射晶体生长","volume":"","year":"1999"},{"abstractinfo":"本文概括和比较了当今生长BBO晶体的各种方法,并从BBO晶体的物理特性和生长习性出发,分析了BBO晶体中包裹物的成因,讨论了提高BBO晶体的尺寸和光学质量所需解决的问题,并指出了解决的方向,为生长大截面高质量的BBO晶体打下基础.BBO晶体的原料的制备是首先要解决的问题.在各种生长方法中需要共同解决的问题是温度在长期中的短时间波动问题,更合适的助熔剂的探索和确定问题.对于各种方法中的具体要解决的关键问题也进行了阐述.","authors":[{"authorName":"吴喜泉","id":"42ea2f6f-e43b-46d5-8592-2285c7866601","originalAuthorName":"吴喜泉"},{"authorName":"吴少凡","id":"511fb1db-8ebd-469d-a390-20cc30ec4223","originalAuthorName":"吴少凡"},{"authorName":"谢剑凌","id":"940c8c2d-0b74-4227-9dfb-7bfa80f37dce","originalAuthorName":"谢剑凌"},{"authorName":"李敢生","id":"5150052a-5d50-49b2-b1cd-3b99cad64ced","originalAuthorName":"李敢生"}],"doi":"10.3969/j.issn.1673-2812.2000.z1.103","fpage":"461","id":"0a0891d3-db26-4bee-b8f1-8913d872fb05","issue":"z1","journal":{"abbrevTitle":"CLKXYGCXB","coverImgSrc":"journal/img/cover/CLKXYGCXB.jpg","id":"13","issnPpub":"1673-2812","publisherId":"CLKXYGCXB","title":"材料科学与工程学报"},"keywords":[{"id":"2c3420b2-e0eb-4c0a-bd1b-0d550f820d3b","keyword":"","originalKeyword":""}],"language":"zh","publisherId":"clkxygc2000z1103","title":"提高BBO晶体的尺寸和光学质量的途径","volume":"18","year":"2000"},{"abstractinfo":"","authors":[{"authorName":"李敢生","id":"75dbb33a-b09f-46f4-b133-777f11964ba6","originalAuthorName":"李敢生"}],"doi":"","fpage":"88","id":"0e8cbd8e-0c7e-431c-a8a3-9bcef17d25b7","issue":"z1","journal":{"abbrevTitle":"RGJTXB","coverImgSrc":"journal/img/cover/RGJTXB.jpg","id":"57","issnPpub":"1000-985X","publisherId":"RGJTXB","title":"人工晶体学报"},"keywords":[{"id":"3542940d-5d08-4b53-8746-ceb28d33ab09","keyword":"","originalKeyword":""}],"language":"z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一、为纪念李薰创办和主编《金属学报》,继承并发扬他毕生致力于科技进步的业绩,特设立《金属学报》纪念李薰奖金基金.二、基金来源是乐于赞助的科研单位、高等院校、企业、团体的捐赠.基金属于专款,全部存入银行,每年支取利息,直接用于奖励.","authors":[],"categoryName":"|","doi":"","fpage":"2","id":"53b5b4af-4a26-4ab3-9944-a079f1cdb6c6","issue":"2","journal":{"abbrevTitle":"JSXB","coverImgSrc":"journal/img/cover/JSXB.jpg","id":"48","issnPpub":"0412-1961","publisherId":"JSXB","title":"金属学报"},"keywords":[],"language":"zh","publisherId":"0412-1961_1985_2_2","title":"《金属学报》纪念李薰奖金基金简章","volume":"21","year":"1985"}],"totalpage":156,"totalrecord":1560}