scholarly article | Q13442814 |
P356 | DOI | 10.1039/C0NJ00716A |
P2093 | author name string | Masahiko Taniguchi | |
Marcin Ptaszek | |||
Jonathan S. Lindsey | |||
Vanampally Chandrashaker | |||
P2860 | cites work | Cell evolution and Earth history: stasis and revolution | Q22065915 |
Atmospheric composition and climate on the early Earth | Q28766374 | ||
Decarboxylation of uroporphyrin by heating at atmospheric pressure | Q33424693 | ||
The porphobilinogen synthase catalyzed reaction mechanism | Q34350202 | ||
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The formation of coproporphyrins by the polymerization of monopyrroles in acidic solution | Q36395072 | ||
The type I fatty acid and polyketide synthases: a tale of two megasynthases | Q36489362 | ||
Biosynthesis of polyketide synthase extender units | Q37398015 | ||
Evolution of porphyrins | Q41745487 | ||
Partition of porphyrins between cyclohexanone and aqueous sodium acetate as a function of pH. Determination of uroporphyrin and of hydrophilic porphyrin conjugates | Q42259229 | ||
Synthetic routes to meso-patterned porphyrins | Q43253564 | ||
Simple formation of an abiotic porphyrinogen in aqueous solution. | Q44877354 | ||
Facile synthesis of a "ready to use" precursor of porphobilinogen and its amino Acid derivatives | Q46849392 | ||
The search for the chemistry of life's origin | Q56490408 | ||
P433 | issue | 1 | |
P304 | page(s) | 65-75 | |
P577 | publication date | 2011-01-01 | |
P1433 | published in | New Journal of Chemistry | Q3338971 |
P1476 | title | Abiotic formation of uroporphyrinogen and coproporphyrinogen from acyclic reactants | |
P478 | volume | 35 |
Q57433617 | A tandem combinatorial model for the prebiogenesis of diverse tetrapyrrole macrocycles |
Q57428844 | Catalytic diversification upon metal scavenging in a prebiotic model for formation of tetrapyrrole macrocycles |
Q57439389 | Complexity in structure-directed prebiotic chemistry. Effect of a defective competing reactant in tetrapyrrole formation |
Q57431313 | Complexity in structure-directed prebiotic chemistry. Reaction bifurcation from a β-diketone in tetrapyrrole formation |
Q57431311 | Complexity in structure-directed prebiotic chemistry. Unexpected compositional richness from competing reactants in tetrapyrrole formation |
Q57433536 | Diversity, isomer composition, and design of combinatorial libraries of tetrapyrrole macrocycles |
Q37967638 | Etiology of potentially primordial biomolecular structures: from vitamin B12 to the nucleic acids and an inquiry into the chemistry of life's origin: a retrospective |
Q57429038 | Expanded combinatorial formation of porphyrin macrocycles in aqueous solution containing vesicles. A prebiotic model |
Q44859177 | Paley's watchmaker analogy and prebiotic synthetic chemistry in surfactant assemblies. Formaldehyde scavenging by pyrroles leading to porphyrins as a case study. |
Q57434354 | Scope and limitations of two model prebiotic routes to tetrapyrrole macrocycles |
Q57433480 | Self-organization of tetrapyrrole constituents to give a photoactive protocell |
Q57434298 | Synthesis of diverse acyclic precursors to pyrroles for studies of prebiotic routes to tetrapyrrole macrocycles |
Q44603945 | Temperature-dependent templated growth of porphine thin films on the (111) facets of copper and silver. |
Q44864315 | The Porphobilinogen Conundrum in Prebiotic Routes to Tetrapyrrole Macrocycles. |
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