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虚拟仿真软件辅助液相色谱分离条件的绿色优化实验
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作者 石志红 边刚 +1 位作者 张红医 张博然 《大学化学》 CAS 2023年第8期136-144,共9页
由于耗时长、废液多等制约因素,大学高效液相色谱(HPLC)实验均未涉及分离条件的优化,实验中学生只是“照方抓药”完成操作练习,其面向特定分离对象构建HPLC分析方案的实践能力并未得到有效培养。为此,我们提出一种改进方案:将色谱进样... 由于耗时长、废液多等制约因素,大学高效液相色谱(HPLC)实验均未涉及分离条件的优化,实验中学生只是“照方抓药”完成操作练习,其面向特定分离对象构建HPLC分析方案的实践能力并未得到有效培养。为此,我们提出一种改进方案:将色谱进样练习和大黄蒽醌类化合物的检测实验有机结合起来,在不延长学时的前提下,采用虚拟仿真软件HPLC Simulator进行色谱条件优化。学生在进样练习实验中通过分工协作获取不同温度、不同流动相配比条件下的保留时间数据;在全体同学共享实验数据的基础上,利用HPLC Simulator软件实现色谱分离条件的绿色优化。软件模拟输出的最优色谱条件在第二次课上得到实验验证。这种改进措施将原本枯燥无味的色谱进样练习升华为探索性的实验,激发了学生的学习热情。可使学生在有限的学时内掌握色谱条件的优化方法,培养学生利用信息技术解决实际问题的能力,提高信息化背景下的实验教学质量。另外,通过分工协作数据共享可以更好地培养学生的团队合作精神。 展开更多
关键词 虚拟仿真软件 色谱条件优化 大黄蒽醌类化合物 绿色分析化学
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诺贝尔化学奖类大学生创新实验--Suzuki偶联反应制备DPP类荧光染料 被引量:4
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作者 熊就凯 赵美娟 +3 位作者 王亚男 边刚 戎瑞雪 王克让 《大学化学》 CAS 2020年第12期227-232,共6页
以丁二酸二异丙酯和对溴苯甲腈为原料,经闭环和偶联反应合成了吡咯并吡咯二酮(DPP)类分子,与1-溴-2-甲基丁烷经亲核取代反应,进而经Suzuki偶联反应与9-蒽硼酸反应制备了DPP类染料分子。化合物结构经1HNMR、13C NMR和HRMS等表征,并且DPP... 以丁二酸二异丙酯和对溴苯甲腈为原料,经闭环和偶联反应合成了吡咯并吡咯二酮(DPP)类分子,与1-溴-2-甲基丁烷经亲核取代反应,进而经Suzuki偶联反应与9-蒽硼酸反应制备了DPP类染料分子。化合物结构经1HNMR、13C NMR和HRMS等表征,并且DPP类染料分子具有强的荧光特征,在氯仿溶液和固态下的荧光量子效率可分别达88.4%和78.9%。 展开更多
关键词 诺贝尔化学奖 SUZUKI偶联反应 吡咯并吡咯二酮 荧光
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Electrostatically connected nanoarchitected electrocatalytic films for boosted water splitting
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作者 Chao-Peng Wang Hao Sun +5 位作者 gang bian Jia-Xi Wang Xixi Pang Guoqi Wang Jian Zhu Xian-He Bu 《Nano Research》 SCIE EI CSCD 2024年第3期1114-1122,共9页
Active sites of two-dimensional(2D)electrocatalysts are often partially blocked owing to their inevitable stacking and hydrophobic polymeric binders in macroscale electrodes,therefore impeding their applications in ef... Active sites of two-dimensional(2D)electrocatalysts are often partially blocked owing to their inevitable stacking and hydrophobic polymeric binders in macroscale electrodes,therefore impeding their applications in efficient electrolyzers.Here,using layered double hydroxide(LDH)nanosheets as a model 2D electrocatalyst,we demonstrate that their performance toward water splitting can be boosted when they are electrostatically assembled into an organized structure pillared by hydrophilic polyelectrolytes or nanoparticles in a layer-by-layer(LbL)fashion.In particular,their mass activity on a planar electrode can be as large as 2.267 mA·μg^(-1) toward oxygen evolution reaction(OER),when NiFe-LDH nanosheets are electrostatically connected by poly(sodium 4-styrenesulfonate)(PSS),while drop-casted NiFe-LDH nanosheets only have a mass activity of 0.116 mA·μg^(-1).In addition,these homogeneous NiFe-LDH nanofilms can be easily deposited on three-dimensional(3D)surfaces with high areas,such as carbon cloths,to serve as practical electrodes with overpotentials of 328 mV at a current density of 100 mA·cm^(-2),and stability for 40 h.Furthermore,Pt nanoparticles can be LbL assembled with NiFe-LDH as bifunctional electrodes for synergistically boosted oxygen and hydrogen evolution reactions(HER),leading to successful overall water splitting powered by a 1.5 V battery.This study heralds the spatial control of 2D nanomaterials in nanoscale precision as an efficient strategy for the design of advanced electrocatalysts. 展开更多
关键词 layer-by-layer(LbL)assembly layered double hydroxides(LDH) two-dimensional(2D)electrocatalysts oxygen evolution reaction(OER) water splitting
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High-mobility patternable MoS_(2) percolating nanofilms 被引量:3
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作者 Xiangxiang Gao Jun Yin +4 位作者 gang bian Hai-Yang Liu Chao-Peng Wang Xi-Xi Pang Jian Zhu 《Nano Research》 SCIE EI CSCD 2021年第7期2255-2263,共9页
Fabrication of large-area and uniform semiconducting thin films of two-dimensional(2D)materials is paramount for the full exploitation of their atomic thicknesses and smooth surfaces in integrated circuits.In addition... Fabrication of large-area and uniform semiconducting thin films of two-dimensional(2D)materials is paramount for the full exploitation of their atomic thicknesses and smooth surfaces in integrated circuits.In addition to elaborate vapor-based synthesis techniques for the wafer-scale growth of 2D films,solution-based approaches for high-quality thin films from the liquid dispersions of 2D flakes,despite underdeveloped,are alternative cost-effective tactics.Here,we present layer-by-layer(LbL)assembly as an effective approach to obtaining scalable semiconducting films of molybdenum disulfide(MoS_(2))for field-effect transistors(FETs).LbL assembly is achieved by coordinating electrochemically exfoliated MoS_(2) with cationic poly(diallyldimethylammonium chloride)(PDDA)through electrostatic interactions.The PDDA/MoS_(2) percolating nanofilms show controlled and self-limited growth on a variety of substrates,and are easily patterned through lift-off processes.Ion gel gated FETs are fabricated on these MoS_(2) nanofilms,and they show mobilities of 9.8 cm^(2)·V^(−1)·s^(−1),on/off ratios of 2.1×10^(5) with operating voltages less than 2 V.The annealing temperature in the fabrication process can be as low as 200℃,thereby permitting the fabrication of flexible FETs on polyethylene terephthalate substrates.The LbL assembly technique holds great promise for the large-scale fabrication of flexible electronics based on solution-processed 2D semiconductors. 展开更多
关键词 layer-by-layer assembly molybdenum disulfide NANOFILMS solution-processed electronics field-effect transistors
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