1,076 results on '"Yan, Chao‐Guo"'
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102. Synthesis, crystal structure of bis-terpyridinyl-calix[4]arene derivatives and fluorescent sensor for Zn2+
103. Convenient synthesis of hexasubstituted benzene derivatives via DABCO promoted domino reaction of arylidene malononitrile and dialkyl but-2-ynedioate
104. Domino Reaction for Synthesis of Spiro[pyrazole‐4,5′‐pyrrolo[3,4‐c]carbazoles] and Spiro[pyrrolo[3,4‐c]carbazole‐5,5′‐thiazoles]
105. Efficient synthesis of polyfunctionalized carbazoles and pyrrolo[3,4-c]carbazoles via domino Diels–Alder reaction
106. Self-assembly of bis-[1]rotaxanes based on diverse thiourea-bridged mono-functionalized dipillar[5]arenes
107. Intramolecular Diels−Alder reaction of styrene with phenoxy‐acrylate for construction of functionalized naphthalenes
108. Water Modulated Diastereoselective Synthesis of cis/trans-Spiro[indoline-3,6′-naphtho[2,3-c]carbazoles]
109. Convenient construction of spiro[indoline-3,5'-pyrrolo[3,4-c]carbazole] and spiro[indene-2,5'-pyrrolo[3,4-c]carbazole] via acid-catalyzed Diels-Alder reaction
110. Pillar[5]arene-based [1]rotaxanes with salicylaldimine as the stopper: synthesis, characterization and application in the fluorescence turn-on sensing of Zn2+ in water.
111. Multicomponent Reaction for Diastereoselective Synthesis of Spiro[carbazole-3,4′-pyrazoles] and Spiro[carbazole-3,4′-thiazoles]
112. Diastereoselective Synthesis of Tetrahydrospiro[carbazole-1,3′-indolines] via an InBr3-Catalyzed Domino Diels–Alder Reaction
113. Synthesis of polyfunctionalized acrylates via one-pot reactions of arylamines, methyl propiolate, aromatic aldehydes, and active methylene compounds
114. Convenient synthesis of polyfunctional dihydrothiophenes with tandem reaction of 1,3-thiazolidinedione, aldehyde, arylamine and ethyl cyanoacetate
115. Novel synthesis of resorcinarene O-acetates by BF3·OEt2-catalyzed cyclocondensation of 1,3-(dialkoxycarbonylmethoxy)benzenes with aldehydes
116. Syntheses, reactions and crystal structures of 1,3-alternate p-tert-butylthiacalix[4]arene esters and amides
117. 1,3-Dipolar cycloaddition for selective synthesis of functionalized spiro[indoline-3,3′-pyrrolizines]
118. Molecular diversity of triphenylphosphine promoted reaction of electron-deficient alkynes and arylidene Meldrum acid (N,N'-dimethylbarbituric acid)
119. Regioselective synthesis of calix[4]arene 1,3-di- and monosubstituted sulfur-containing Schiff bases
120. Synthesis and characterization of bis-[1]rotaxanes via salen-bridged bis-pillar[5]arenes
121. Construction of [1]rotaxanes with pillar[5]arene as the wheel and terpyridine as the stopper
122. Synthesis, crystal structure and configuration of resorcinarene amides
123. Construction of Polyfunctionalized 2,4-Dioxa-8-azaspiro[5.5]undec-9-enes and 2,4,8-Triazaspiro[5.5]undec-9-enes via a Domino [2+2+2] Cycloaddition Reaction
124. Efficient synthesis of tetra- and penta-substituted benzenes via a domino annulation reaction of a pyridinium ylide and chalcone o-enolate
125. DDQ dehydrogenative Diels–Alder reaction for the synthesis of functionalized spiro[carbazole-1,3′-indolines] and spiro[carbazole-1,5′-pyrimidines]
126. Molecular diversity of the acid promoted domino reaction of 3-hydroxy-3-(indol-3-yl)indolin-2-ones and cyclic mercapto-substituted β-enamino esters
127. Diastereoselective synthesis of spiro[carbazole-3,5′-pyrimidines] and spiro[carbazole-3,1′-cyclohexanes] via four-component reaction
128. Molecular diversity of TEMPO-mediated cycloaddition of ketohydrazones and 3-phenacylideneoxindoles
129. Synthesis and characterization of water-soluble gold colloids stabilized with aminoresorcinarene
130. Syntheses, crystal structures, and electrochemical properties of multi-ferrocenyl resorcinarenes
131. Domino β‐C−H Functionalization and [3+2] Cycloaddition for Efficient Synthesis of Diverse Spiro and Polycyclic Compounds
132. Convergent Synthesis of Triindanone-Fused Spiro[bicyclo[2.2.2]octane-2,3′-indolines] via Domino Reaction of 1,3-Indanedione and 3-Methyleneoxindoles
133. Synthesis of Calix[4] resorcinarene Core Dendrimers with Peripheral Salicylideneimine Functional Groups
134. Diastereoselective Synthesis of Spiro[indoline‐3,7′‐pyrrolo[1,2‐ a ]azepines] via Sequential [3+2] Cycloaddition and Ring Expansion Reaction
135. Selective Construction of Diverse Polycyclic Spirooxindoles via a Three-Component Reaction of Cyclic Mercapto-Substituted β-Enamino Esters, Isatins, and Cyclic 1,3-Diketones
136. Formation of N,S‐Containing Polycycles via Base Promoted Dimerization of N‐Phenacyl and N‐Benzylbenzothiazolium Bromides
137. Progress in Multicomponent Reactions Involving 1,3-Indanedione
138. Selective construction of functionalized chromeno[3,4-b]pyrroles and benzo[c]chromenesviaa K3PO4promoted three-component reaction
139. Diastereoselective synthesis of dispiro[indoline-3,3′-furan-2′,3′′-pyrrolidine] via [3 + 2]cycloaddition reaction of MBH maleimides of isatins and 1,3-dicarbonyl compounds
140. Diastereoselective construction of carbazole-based spirooxindoles via the Levy three-component reaction
141. Domino Reaction of Aromatic Aldehydes and 1,3-Indanediones for Construction of Bicyclo[2.2.2]octanes and Dibenzo[b,g]indeno[1′,2′:3,4]fluoreno[1,2-d]oxonines
142. Efficient Synthesis of Functionalized 6‐(2‐Oxoindolin‐3‐yl)‐5‐azaspiro[2.4]heptanes
143. Convenient Construction of Spiro[pyrazole‐4,1′‐pyrido[2,1‐a]isoquinoline] and Spiro[pyrazole‐4,4′‐pyrido[1,2‐a]quinoline] via Three‐Component Reaction.
144. Intramolecular Diels‐Alder Reaction of Styrene with Phenoxy‐Acrylate for Construction of Functionalized Naphthalenes.
145. Synthesis of p-tert-Butyldihomooxacalix[4]arene Mono-substituted Dithiocarbonylhydrazones and Dithiosemicarbazones.
146. Diastereoselective Synthesis of Tetrahydrospiro[carbazole-1,3′-indolines] via an InBr3‑Catalyzed Domino Diels–Alder Reaction.
147. Efficient Synthesis of Fused and Bridged Cyclic Pyrrolo[3,4‐a]carbazoles via NH 4 I Promoted Three‐component Reaction
148. Construction of Tetrahydrospiro[carbazole‐1,2′‐indenes] and Dihydrospiro[carbazole‐1,3′‐indolines] via NH 4 I Promoted Three‐Component Reaction
149. Synthesis of 7′-Arylidenespiro[indoline-3,1′-pyrrolizines] and 7′-Arylidenespiro[indene-2,1′-pyrrolizines] via [3 + 2] Cycloaddition and β-C–H Functionalized Pyrrolidine
150. Construction of Spiro[indoline-3,3′-pyridazines] and Spiro[indene-2,3′-pyridazines] via TEMPO-Mediated Oxidative Aza-Diels-Alder Reactions
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