按照《大连化物所科研成果原始数据核查条例》(所发[2008]75号文)、《大连化物所学风道德委员会工作条例》(所发[2010]44号文)以及《大连化物所实验原始记录管理办法》(所发[2011]52号文)的规定,我所将于本年度10月至11月组织开展科研成果原始数据核查工作。核查的实施方案如下:
1.接受核查的科研成果范围
(1) 2015年度计入绩效考核的公开发表论文(仅限我所为第一产权单位的非综述、非摘要类论文,数据来源:由科技处提供)。
(2) 2015年鉴定、验收或登记的,我所为第一产权单位的成果(数据来源:由科技处提供)。
(3) 被置疑的研究成果(可在11月15日前以邮件形式实名举报,举报信箱:xuefeng@dicp.ac.cn)。
(4) 对于没有上述核查内容的研究组,可抽查课题验收报告、总结报告等其他研究成果。
2.抽样方法
列入核查抽样范围的研究组包括:2015年以前成立(含2015年成立)、且2014、2015两年没有接受核查的独立研究组(以绩效是否单独考核计算为准,组群按照一个研究组抽样),在上一次核查中评分排在末两位的研究组。核查范围内的研究组清单见附件1。
学风道德委员会办公室根据核查范围,检索需要接受核查的各研究组的论文和成果,组织学风道德委员会委员进行抽样, 确定需要接受核查的成果清单,并进行公示,详见附件2。
3.核查实施
质量处提前联系确定核查专家,核查专家包括学风道德委员会委员及以核查专家或观察员身份参与过核查的青年科学家。为加强新引进人才对科研成果原始数据核查工作的认识,此次将继续邀请部分新研究组长、新引进人才等以“观察员”身份参与核查。
公示期结束后,由参与核查的学风道德委员会委员及专家讨论确定分工。
现场核查前,由学风道德委员会办公室组织核查专家讨论核查的操作细节,统一核查标准,将核查成果的材料交给核查专家,并与核查专家签订《保密承诺书》。
学风道德委员会办公室负责联系接受核查单位,确定现场核查时间,正式开始核查。根据核查结果,由核查专家对核查情况进行记录,给出核查结论和建议,并对被核查成果的原始数据管理情况进行评分。
为加强《大连化物所实验原始记录管理办法》的落实,此次核查将对被核查研究组的原始数据管理情况同《大连化物所实验原始记录管理办法》的符合程度进行评价,并在核查结论中记录。
现场核查工作计划在11月30日前完成。
附件1:
列入2016年科研成果原始数据核查范围内的研究组
序号 |
研究组 |
备注 |
序号 |
研究组 |
备注 |
1 |
102 |
|
16 |
1809 |
|
2 |
103 |
|
17 |
1817 |
|
3 |
01T1 |
|
18 |
18T3 |
|
4 |
201 |
|
19 |
18T4 |
|
5 |
209 |
20 |
DNL0301 |
| |
6 |
502 |
|
21 |
DNL0302 |
|
7 |
504 |
|
22 |
DNL0804 |
|
8 |
506 |
|
23 |
DNL0807 |
|
9 |
708 |
|
24 |
DNL0903 |
|
10 |
1101 |
|
25 |
DNL0906 |
|
11 |
1102 |
|
26 |
DNL1200 |
|
12 |
1501 |
|
27 |
DNL1600 |
|
13 |
1805 |
|
28 |
DNL1700 |
|
14 |
1807 |
|
29 |
DNL21T2 |
|
15 |
1808 |
|
30 |
DNL21T3 |
|
附件2:
2016年科研成果原始数据核查抽样结果(文章)
序号 |
研究组 |
论文题目 |
作者 |
刊名或著作名 |
1 |
102 |
Field Switching Combined with Bradbury |
陈创,Mahmoud Tabrizchi,王卫国,李海洋 |
ANALYTICAL CHEMISTRY |
2 |
103 |
Molecularly imprinted polymer microspheres prepared by Pickering emulsion polymerization for selective solid-phase extraction of eight bisphenols from human urine samples |
杨甲甲,李云,王金成,孙晓丽,曹蓉,孙昊,黄超囡,陈吉平 |
ANALYTICA CHIMICA ACTA |
3 |
01T1 |
Uncovering the pKa dependent fluorescence quenching of carbon dots induced by chlorophenols |
张雨,王昱,关亚风,冯亮 |
Nanoscale |
4 |
201 |
Concise Redox Deracemization of Secondary and Tertiary Amines with a Tetrahydroisoquinoline Core via a Nonenzymatic Process |
姬悦,时磊,陈木旺,冯广收,周永贵 |
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY |
5 |
209 |
Substrate Activation Strategies in Rhodium(III)-CatalyzedSelective Functionalization of Arenes |
宋国勇,李兴伟 |
ACCOUNTS OF CHEMICAL RESEARCH |
6 |
502 |
Tailoring the Oxidation Activity of Pt Nanoclusters via Encapsulation |
张帆,焦峰,潘秀莲,Kang Gao,肖建平, Shuo Zhang,包信和 |
ACS Catalysis |
7 |
504 |
Nanoparticles at Grain Boundaries Inhibit the Phase Transformation of Perovskite Membrane |
刘妍,朱雪峰,李名润,Ryan P. Hayre,杨维慎 |
NANO LETTERS |
8 |
506 |
Zinc―cobalt oxides as efficient water oxidation catalysts: the promotion effect of ZnO |
荣凤,赵娇,苏盼盼,姚毅,李名润,杨启华,李灿 |
Journal of Materials Chemistry A |
9 |
708 |
Intracavity CH4 Raman laser using negative-branch unstable resonator |
周冬建,郭敬为,周灿华,刘金波,刘栋,金玉奇 |
OPTICS COMMUNICATIONS |
10 |
1101 |
Redox-Responsive Fluorescent Probes with Different Design Strategies |
楼张蓉,李鹏,韩克利 |
ACCOUNTS OF CHEMICAL RESEARCH |
11 |
1102 |
Extremely short-lived reaction resonances in Cl + HD (v = 1)→DCl + H due to chemical bond softening |
杨天罡,陈俊,黄龙,汪涛,肖春雷,孙志刚,戴东旭,杨学明,张东辉 |
SCIENCE |
12 |
1501 |
A Schiff base modified gold catalyst for green and efficient H2 production from formic acid |
刘清港,杨小峰,黄延强,徐舒涛,苏雄,潘晓丽,徐金铭,王爱琴,梁长海,王新葵,张涛 |
Energy & Environmental Science |
13 |
1805 |
Cellulosimicrobium cellulans strain E4-5 enzymatic hydrolysis of curdlan for production of (1→3)-linkedβ-D-glucan oligosaccharides |
傅 |
CARBOHYDRATE POLYMERS |
14 |
1807 |
Flexible Fabrication of Shape-Controlled Collagen Building Blocks for Self-Assembly of 3D Microtissues |
张旭,孟昭旭,马静云,石杨,许慧,Simon Lykkemark,秦建华 |
Small |
15 |
1808 |
Preparation of mesoporous SiO2@azobenzene-COOH chemoselective nanoprobes for comprehensive mapping of amino metabolites in human serum |
李华,秦倩,乔利珍,石先哲,许国旺 |
CHEMICAL COMMUNICATIONS |
16 |
1809 |
Functionalizing with glycopeptide dendrimers significantly enhances the hydrophilicity of the magnetic nanoparticles |
李吉楠,王方军,刘静,熊志超,黄光,万昊,刘哲益,程凯,邹汉法 |
CHEMICAL COMMUNICATIONS |
17 |
1817 |
Facile Synthesis of Gold@Graphitized Mesoporous Silica Nanocomposite and Its Surface-Assisted Laser Desorption/Ionization for Time-of-Flight Mass Spectroscopy |
徐桂菊,刘胜菊,彭佳喜,吕闻凭,吴仁安 |
ACS Applied Materials & Interfaces |
18 |
18T3 |
High-Efficiency Recognition and Identification of Disulfide Bonded Peptides in Rat Neuropeptidome Using Targeted Electron Transfer Dissociation Tandem Mass Spectrometry |
于希,Abbas Khani,Xueting Ye,Filomena Petruzziello,Huiyuan Gao,张晓哲,Gregor Rainer |
ANALYTICAL CHEMISTRY |
19 |
DNL0301 |
Vertically aligned carbon-coated titanium dioxide nanorod arrays on carbon paper with low platinum for proton exchange membrane fuel cells |
蒋尚峰,衣宝廉,张长昆,刘飒,俞红梅,邵志刚 |
JOURNAL OF POWER SOURCES |
20 |
DNL0302 |
Enhanced Oxygen Reduction Activity and Solid Oxide Fuel Cell Performance with a Nanoparticles-Loaded Cathode |
张小敏,刘丽,赵哲,涂宝峰,区定容,崔大安,魏绪明,Xiaobo Cheng,程谟杰 |
NANO LETTERS |
21 |
DNL0804 |
A Facile Top-Down Protocol for Postsynthesis Modification of Hierarchical Aluminum-Rich MFI Zeolites |
于丽丽,黄声骏,苗澍,陈福存,张爽,刘珍妮,谢素娟,徐龙伢 |
CHEMISTRY-A EUROPEAN JOURNAL |
22 |
DNL0903 |
A self-sustained, complete and miniaturized methanol fuel processor for proton exchange membrane fuel cell |
杨梅,焦凤军,李淑莲,李恒强,陈光文 |
JOURNAL OF POWER SOURCES |
23 |
DNL0906 |
Effect of graphene oxide on the behavior of Poly(amide-6-b-ethylene oxide)/graphene oxide mixed matrix membranes in permeation process |
赵丹,任吉中,邱永涛,李晖,花开胜,李新学,邓麦村 |
JOURNAL OF APPLIED POLYMER SCIENCE |
24 |
DNL1200 |
Cavity Controls the Selectivity: Insights of Confinement Effects on MTO |
李金哲,魏迎旭,陈景润,徐舒涛,田鹏,杨晓峰,李冰,王金棒,刘中民 |
ACS Catalysis |
25 |
DNL1600 |
Efficient Visible-Light-Driven Z-Scheme Overall Water Splitting Using a MgTa2O6-xNy/TaON Heterostructure Photocatalyst for H2 Evolution |
陈闪山,祁育,Takashi Hisatomi,丁倩,Tomohiro Asai,李政,Su Su Khine Ma,章福祥,Kazunari Domen,李灿 |
Angewandte Chemie International Edition |
26 |
DNL1700 |
Highly Stable Anion Exchange Membranes with Internal Cross Linking Networks |
徐万兴,赵于月,袁治章,李先锋,张华民 |
ADVANCED FUNCTIONAL MATERIALS |
27 |
DNL21T2 |
A novel 3D covalent organic framework membrane grown on a porous a-Al2O3 substrate under solvothermal conditions |
鲁辉,王畅,陈娟娟,格日乐,冷文光,董彬, Jun Huang,高艳安 |
CHEMICAL COMMUNICATIONS |
注:18T4、DNL807、DNL21T3在2015年度没有计入绩效考核的公开发表论文及经鉴定、验收或登记的成果,由专家到现场核查原始数据管理情况。
附件3:科研成果原始数据核查评分标准