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- XLV.—Optical activation of racemic acid by l-malic acid. Alex. McKenzie, Nellie Walker
, J. Chem. Soc., Trans.
, 1922
, 121
, 349
- LI.—Conversion of racemic acid into a mixture of racemic and d-tartaric acids by means of l-malic acid. Alex. McKenzie
, J. Chem. Soc., Trans.
, 1915
, 107
, 440
- CCXXV.—Studies in the resolution of racemic acids by optically active alcohols. Part III. The resolution of r-tartaric and r-dimethoxysuccinic acids by 1-menthol. Henry Wren, Kathleen H. Hughes
, J. Chem. Soc., Trans.
, 1924
, 125
, 1739
- Aspect ratio-controlled preparation of α-CaSO4·0.5H2O from phosphogypsum in potassium tartrate aqueous solution. Xiangbin Sun, Genlei Zhang, Peng Cui
, RSC Adv.
, 2019
, 9
, 21601
- Facile synthesis of selenium/potassium tartrate derived porous carbon composite as an advanced Li–Se battery cathode. Chenhao Zhao, Libin Xu, Zhibiao Hu, Sheng'en Qiu, Kaiyu Liu
, RSC Adv.
, 2016
, 6
, 47486
- 181. Selenium dioxide. A new oxidising agent. Part IV. The preparation and properties of ethyl ketohydroxysuccinate. S. Astin, H. L. Riley
, J. Chem. Soc.
, 1934
, 844
- CCCXXXVI.—Optical activation of racemic acid by d-malic acid. Alex. McKenzie, Harold James Plenderleith, Nellie Walker
, J. Chem. Soc., Trans.
, 1923
, 123
, 2875
- Enhanced thermoelectric performance of Cu3SbS4 flower-like hierarchical architectures composed of Cl doped nanoflakes via an in situ generated CuS template. Qun Wang, Jianhuan Li, Jianjun Li
, Phys. Chem. Chem. Phys.
, 2018
, 20
, 1460
- Organic chemistry
, J. Chem. Soc., Abstr.
, 1915
, 108
, i365
- Progress in the use of organic potassium salts for the synthesis of porous carbon nanomaterials: microstructure engineering for advanced supercapacitors. Qian Zhang, Bing Yan, Li Feng, Jiaojiao Zheng, Bo You, Jiayun Chen, Xin Zhao, Chunmei Zhang, Shaohua Jiang, Shuijian He
, Nanoscale
, 2022
, 14
, 8216