The Experts below are selected from a list of 156 Experts worldwide ranked by ideXlab platform
Janice M. Nelke - One of the best experts on this subject based on the ideXlab platform.
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Organic Syntheses - Acyloin Condensation in which Chlorotrimethylsilane is used as a Trapping Agent: 1,2‐Bis(trimethylsilyloxy)cyclobutene and 2‐Hydroxycyclobutanone
Organic Syntheses, 2003Co-Authors: Jordan J. Bloomfield, Janice M. NelkeAbstract:Acyloin condensation in which chlorotrimethylsilane is used as a trapping agent: 1,2-bis(trimethylsilyloxy)cyclobutene and 2-hydroxycyclobutanone product: 1,2-Bis(trimethylsilyloxy)cyclobutene product: 2-hydroxycyclobutanone Keywords: coupling; cyclization, reductive cyclization; reduction, miscellaneous; chlorotrimethylsilane, drying of; sodium sand; sodium-Potassium Alloy; toluene; chlorotrimethylsilane, in acyloin reactions; sodium-Potassium Alloy; addition funnels, Hershberg; dry-box, in the preparation of 2-hydroxycyclobutanone; stirrers, vibromixer; vibromixer
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acyloin condensation in which chlorotrimethylsilane is used as a trapping agent 1 2 bis trimethylsilyloxy cyclobutene and 2 hydroxycyclobutanone
Organic Syntheses, 2003Co-Authors: Jordan J. Bloomfield, Janice M. NelkeAbstract:Acyloin condensation in which chlorotrimethylsilane is used as a trapping agent: 1,2-bis(trimethylsilyloxy)cyclobutene and 2-hydroxycyclobutanone product: 1,2-Bis(trimethylsilyloxy)cyclobutene product: 2-hydroxycyclobutanone Keywords: coupling; cyclization, reductive cyclization; reduction, miscellaneous; chlorotrimethylsilane, drying of; sodium sand; sodium-Potassium Alloy; toluene; chlorotrimethylsilane, in acyloin reactions; sodium-Potassium Alloy; addition funnels, Hershberg; dry-box, in the preparation of 2-hydroxycyclobutanone; stirrers, vibromixer; vibromixer
Jordan J. Bloomfield - One of the best experts on this subject based on the ideXlab platform.
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Organic Syntheses - Acyloin Condensation in which Chlorotrimethylsilane is used as a Trapping Agent: 1,2‐Bis(trimethylsilyloxy)cyclobutene and 2‐Hydroxycyclobutanone
Organic Syntheses, 2003Co-Authors: Jordan J. Bloomfield, Janice M. NelkeAbstract:Acyloin condensation in which chlorotrimethylsilane is used as a trapping agent: 1,2-bis(trimethylsilyloxy)cyclobutene and 2-hydroxycyclobutanone product: 1,2-Bis(trimethylsilyloxy)cyclobutene product: 2-hydroxycyclobutanone Keywords: coupling; cyclization, reductive cyclization; reduction, miscellaneous; chlorotrimethylsilane, drying of; sodium sand; sodium-Potassium Alloy; toluene; chlorotrimethylsilane, in acyloin reactions; sodium-Potassium Alloy; addition funnels, Hershberg; dry-box, in the preparation of 2-hydroxycyclobutanone; stirrers, vibromixer; vibromixer
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acyloin condensation in which chlorotrimethylsilane is used as a trapping agent 1 2 bis trimethylsilyloxy cyclobutene and 2 hydroxycyclobutanone
Organic Syntheses, 2003Co-Authors: Jordan J. Bloomfield, Janice M. NelkeAbstract:Acyloin condensation in which chlorotrimethylsilane is used as a trapping agent: 1,2-bis(trimethylsilyloxy)cyclobutene and 2-hydroxycyclobutanone product: 1,2-Bis(trimethylsilyloxy)cyclobutene product: 2-hydroxycyclobutanone Keywords: coupling; cyclization, reductive cyclization; reduction, miscellaneous; chlorotrimethylsilane, drying of; sodium sand; sodium-Potassium Alloy; toluene; chlorotrimethylsilane, in acyloin reactions; sodium-Potassium Alloy; addition funnels, Hershberg; dry-box, in the preparation of 2-hydroxycyclobutanone; stirrers, vibromixer; vibromixer
Donghai Wang - One of the best experts on this subject based on the ideXlab platform.
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Self-Templated Synthesis of Mesoporous Carbon from Carbon Tetrachloride Precursor for Supercapacitor Electrodes
ACS Applied Materials & Interfaces, 2016Co-Authors: Duihai Tang, Fang Dai, Mikhail L. Gordin, Shuru Chen, Jiangxuan Song, Donghai WangAbstract:A high-surface-area mesoporous carbon material has been synthesized using a self-templating approach via reduction of carbon tetrachloride by sodium Potassium Alloy. The advantage is the reduction-generated salt templates can be easily removed with just water. The produced mesoporous carbon has a high surface area and a narrow pore size distribution. When used as a supercapacitor electrode, this material exhibits a high specific capacitance (259 F g–1) and excellent cycling performance (>92% capacitance retention for 6000 cycles).
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Self-Templated Synthesis of Mesoporous Carbon from Carbon Tetrachloride Precursor for Supercapacitor Electrodes
2016Co-Authors: Duihai Tang, Fang Dai, Mikhail L. Gordin, Shuru Chen, Jiangxuan Song, Donghai WangAbstract:A high-surface-area mesoporous carbon material has been synthesized using a self-templating approach via reduction of carbon tetrachloride by sodium Potassium Alloy. The advantage is the reduction-generated salt templates can be easily removed with just water. The produced mesoporous carbon has a high surface area and a narrow pore size distribution. When used as a supercapacitor electrode, this material exhibits a high specific capacitance (259 F g–1) and excellent cycling performance (>92% capacitance retention for 6000 cycles)
Di Peng - One of the best experts on this subject based on the ideXlab platform.
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superconductivity in sodium Potassium Alloy doped 2 2 bipyridine from near room temperature synthesis
Journal of Physical Chemistry C, 2020Co-Authors: Di Peng, Ren-shu Wang, Xiao-jia ChenAbstract:Organic materials especially those with π-electrons have attracted widespread attention because they are promising candidates to exhibit high temperature or even room temperature superconductivity....
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Superconductivity in Sodium Potassium Alloy Doped 2,2′-Bipyridine from Near-Room-Temperature Synthesis
The Journal of Physical Chemistry, 2019Co-Authors: Di Peng, Ren-shu Wang, Xiao-jia ChenAbstract:Organic materials especially those with π-electrons have attracted widespread attention because they are promising candidates to exhibit high temperature or even room temperature superconductivity. 2,2′-Bipyridine as a basic raw material is a simple molecule that only contains C, N, and H atoms, and is widely used in metal chelating ligands due to its ease of functionalization and robust redox stability. By doping sodium Potassium Alloy into 2,2′-bipyridine at approximately room temperature, we successfully detected superconductivity with a critical temperature around 7 K through both the dc and ac magnetic measurements together with the zero resistance state by resistance measurements. Furthermore, the superconducting parameters such as the critical fields, London penetration depth, and Ginzburg–Landau coherence length of the 7 K superconducting phase have been obtained. This finding not only broadens the applications of 2,2′-bipyridine, but also opens an encouraging window for the search of superconductors in photoelectric materials such as pyridine compounds and their derivatives.
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superconductivity in sodium Potassium Alloy doped 2 2 bipyridine from near room temperature synthesis
The Journal of Physical Chemistry, 2019Co-Authors: Di Peng, Ren-shu Wang, Xiao-jia ChenAbstract:Organic materials especially those with π-electrons have attracted widespread attention because they are promising candidates to exhibit high temperature or even room temperature superconductivity. 2,2′-Bipyridine as a basic raw material is a simple molecule that only contains C, N, and H atoms, and is widely used in metal chelating ligands due to its ease of functionalization and robust redox stability. By doping sodium Potassium Alloy into 2,2′-bipyridine at approximately room temperature, we successfully detected superconductivity with a critical temperature around 7 K through both the dc and ac magnetic measurements together with the zero resistance state by resistance measurements. Furthermore, the superconducting parameters such as the critical fields, London penetration depth, and Ginzburg–Landau coherence length of the 7 K superconducting phase have been obtained. This finding not only broadens the applications of 2,2′-bipyridine, but also opens an encouraging window for the search of superconductors in photoelectric materials such as pyridine compounds and their derivatives.
Xiao-jia Chen - One of the best experts on this subject based on the ideXlab platform.
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superconductivity in sodium Potassium Alloy doped 2 2 bipyridine from near room temperature synthesis
Journal of Physical Chemistry C, 2020Co-Authors: Di Peng, Ren-shu Wang, Xiao-jia ChenAbstract:Organic materials especially those with π-electrons have attracted widespread attention because they are promising candidates to exhibit high temperature or even room temperature superconductivity....
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Superconductivity in Sodium Potassium Alloy Doped 2,2′-Bipyridine from Near-Room-Temperature Synthesis
The Journal of Physical Chemistry, 2019Co-Authors: Di Peng, Ren-shu Wang, Xiao-jia ChenAbstract:Organic materials especially those with π-electrons have attracted widespread attention because they are promising candidates to exhibit high temperature or even room temperature superconductivity. 2,2′-Bipyridine as a basic raw material is a simple molecule that only contains C, N, and H atoms, and is widely used in metal chelating ligands due to its ease of functionalization and robust redox stability. By doping sodium Potassium Alloy into 2,2′-bipyridine at approximately room temperature, we successfully detected superconductivity with a critical temperature around 7 K through both the dc and ac magnetic measurements together with the zero resistance state by resistance measurements. Furthermore, the superconducting parameters such as the critical fields, London penetration depth, and Ginzburg–Landau coherence length of the 7 K superconducting phase have been obtained. This finding not only broadens the applications of 2,2′-bipyridine, but also opens an encouraging window for the search of superconductors in photoelectric materials such as pyridine compounds and their derivatives.
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superconductivity in sodium Potassium Alloy doped 2 2 bipyridine from near room temperature synthesis
The Journal of Physical Chemistry, 2019Co-Authors: Di Peng, Ren-shu Wang, Xiao-jia ChenAbstract:Organic materials especially those with π-electrons have attracted widespread attention because they are promising candidates to exhibit high temperature or even room temperature superconductivity. 2,2′-Bipyridine as a basic raw material is a simple molecule that only contains C, N, and H atoms, and is widely used in metal chelating ligands due to its ease of functionalization and robust redox stability. By doping sodium Potassium Alloy into 2,2′-bipyridine at approximately room temperature, we successfully detected superconductivity with a critical temperature around 7 K through both the dc and ac magnetic measurements together with the zero resistance state by resistance measurements. Furthermore, the superconducting parameters such as the critical fields, London penetration depth, and Ginzburg–Landau coherence length of the 7 K superconducting phase have been obtained. This finding not only broadens the applications of 2,2′-bipyridine, but also opens an encouraging window for the search of superconductors in photoelectric materials such as pyridine compounds and their derivatives.