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The invention provides a novel pest control agent having a high systemic activity and a high safety with reduced adverse influences on the environment neighboring the place to which the agent is applied, and a process for producing the same. Namely, the present invention relates to a novel 1-aryl-3-cyano-5-heteroarylalkylaminopyrazole derivative represented by the following general formula (1) and a process for producing the same, and a pest control agent containing the same as an active ingredient. 1(wherein X represents N or C-halogen, R1 represents an alkyl group, an alkenyl group, an alkynyl group, or a haloalkyl group, R2 represents hydrogen atom, an alkyl group, or an acyl group, R3 represents hydrogen atom or an alkyl group, A represents any one of the groups represented by A-1 to A-4, R4 represents hydrogen atom, an alkyl group, a halogen atom, and n represents 0, 1, or 2, provided that R1 is a haloalkyl group except a perhaloalkyl group when A is A-1 and n is 0, and that n is not 0 when A is A-4.).

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The ionic crown ether complexes (1) and3*3CH3CN (3) have been prepared by reaction of TlCl and InCl3, respectively, with SbCl5 in the presence of 12-crown-4 in acetonitrile solution.The lead complex 2* (2) has been obtained from the reaction of Pb(CH3)2Cl2 with SbCl5 in the presence of 15-crown-5 in acetonitrile solution. 1-3 were characterized by crystal structure determinations. (1): Space group C2/c, Z = 4, 2306 observed unique reflections, R = 0.051.Lattice dimensions at -70 deg C: a = 2360.9(5), b = 1189.6(2), c = 1080.4(3) pm, beta = 111.14(2) deg. 1 contains cations (+), in which the Tl(+) ion is coordinated sandwich-like by the eight oxygen atoms of the two crown ether molecules.The lone pair at the thallium ion shows steric activity. 2* (2): Space group Pna2(1), Z = 4, 4631 observed unique reflections, R = 0.048.Lattice dimensions at -70 deg C: a = 2972.5(3), b = 1481.9(5), c = 1305.5(1) pm. 2 consists of (2+) ions, in which the lead ion is coordinated sandwich-like by the ten oxygen atoms of the two crown ether molecules without steric activity of the lone pair of Pb(2+), of SbCl6(-) ions, and of molecules , which are already known. 3*3CH3CN (3): Space group P<*>, Z = 2, 5530 observed unique reflections, R = 0.059.Lattice dimensions at -70 deg C: a = 1041.8(8), b = 1052(1), c = 1543(2) pm, alpha = 103.62(9) deg, beta = 108.68(8) deg, gamma = 99.48(8) deg. 3 consists of (3+) ions, SbCl6(-) anions, and crystal CH3CN molecules.The In(3+) ion is coordinated sandwich-like by the eight oxygen atoms of the two crown ether molecules, which are disordered in two positions. – Keywords: Ionic Crown Ether Complexes of Thallium, Lead, Indium, Synthesis, Crystal Structure

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Reference of 23190-16-1, An article , which mentions 23190-16-1, molecular formula is C6H5CH(NH2)CH(C6H5)OH. The compound – (1R,2S)-(−)-2-Amino-1,2-diphenylethanol played an important role in people’s production and life.

Enantiomerically pure beta-hydroxyalkyl and beta-aminoalkyl ferrocenyl sulfides have been synthesized in good yields from mercaptoferrocene and amino alcohol derivatives. Primary beta-aminoalkyl sulfides allowed the synthesis of tetrahydro-1,4-thiazepines containing the ferrocene moiety with good diastereoselectivity and beta-iminoalkyl sulfides. Some of these derivatives have successfully been employed as ligands for palladium-catalyzed allylic substitution, with asymmetric induction of up to 99% ee. ( Wiley-VCH Verlag GmbH, 69451 Weinheim, Germany, 2002).

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Chiral Catalysts,
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The reaction rate of a catalyzed reaction is faster than the reaction rate of the uncatalyzed reaction at the same temperature.14098-44-3, Name is Benzo-15-crown-5, molecular formula is C14H20O5. In a Article,once mentioned of 14098-44-3, Quality Control of: Benzo-15-crown-5

C60 reacts with <15>crown-5-substituted diphenylcarbene precursors to give the corresponding benzo-crowned methanofullerenes 7, which were isolated preparatively and characterized.Two isomers 7a and 7b, which equilibrate to 7a upon heating, were detected by HPLC and separated.The <15>crown-5-, <18>crown-6-, and bis<15>crown-5-substituted hydrazones 3b-d have been prepared.The X-ray structure analysis of the crowned hydrazone 3b shows distinct hydrogen bonding patterns between NH- and crown oxygen atoms in dimer-type arrangements. – Key Words: Benzocrown ethers/ C60/ Crown ethers/ Cycloaddition/ Methanofullerenes (Isomers)/ Fullerenes, methano

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Related Products of 14098-44-3, Catalysts are substances that increase the reaction rate of a chemical reaction without being consumed in the process. 14098-44-3, Name is Benzo-15-crown-5, molecular formula is C14H20O5. In a Article,once mentioned of 14098-44-3

Benzo-15-crown-5-p-toluidino-glyoxime (1) and N(1-naphthyl)amino-benzo-15- crown-5-glyoxime (2) were synthesized by classical methods. Their structures were confirmed by spectral techniques. Both of them were capable of forming complexes with various metal ions (Co2+, Cu2+ and Ni 2+). The structure of the complexes was confirmed by FT-IR, mass spectra and elemental analyses.

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Herein, we report the synthesis and molecular structure of the mono- and dianionic aromatic molecules [(B15C5-kappa5O)2K+](LDOPT-) (1) and [(B15C5-kappa5O)2K+]2(LDOPT2-)THFsolv (2) derived from the parent aromatic polyhydrocarbon 5,6:11,12-di-o-phenylenetetracene (DOPT, LDOPT) by a controlled stepwise one and two electron chemical reduction. The effect of single and double electron charge transfer to a polycondensed aromatic hydrocarbon (PAH) without any disturbing influence of an associated metal cation has been demonstrated. This was achieved by fully sandwiching the cationic K+ counterions between two benzo-15-crown-5-ether (B15C5) ligands resulting in a fully encapsulating (kappa10O) geometry which ensures a complete separation of the K+ counterions and the bare anionic PAH species [LDOPT-] and [LDOPT2-]. The structural changes accompanied by the stepwise reduction from LDOPT to [LDOPT-] to [LDOPT2-] are discussed and compared to earlier predictions based on density functional theory (DFT) as well as the results of previous studies of alkaline metal cationic PAH anion interactions of DOPT in which only a partial metal cation encapsulation has been achieved so far.

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The cyclopentadienylboranes C5H5BR2 1-4 (R = NMe2, 1/2(OCMe2)2, Pri, Me) are synthesized from alkali metal cyclopentadienides MCp (M = Li, Na) and BCl(NMe2)2, ClB (OCMe2)2, BClPri2, and BBrMe2, respectively. Compound 1 reacts with lithium dialkylamides (LiNMe2, LDA, LiTMP) in THF or with elemental sodium to give the salts M[C5H5B(NMe2)2] [M(5) with M = Li, Na]. Compounds 2 and 3 are metalated by LiTMP, and compounds 3 and 4 by cyclopentadienides MCp (M = Li, Na) to give borylcyclopentadienides or boratafulvenes M[C5H5BR2] M(6)-M(8) (R = 1/2(OCMe2)2, Pri, Me). Estimated (NMR) room temperature equilibrium constants for the systems 1-4/LiCp in THF are 0.5, 4, >300, and >300, respectively; they show that dialkylboryl substituents stabilize cyclopentadienide ions markedly. The triclinic THF solvate Na(THF)(5) (=10) forms an approximately trigonal helix with alternating Na(THF)+ and anion units, while the tetragonal tetrahydropyran solvate Na(THP)(S) (?11) forms a tetragonal helix. The monoclinic solvate Li(12-crown-4)-(6) (?12) is molecular, and the orthorhombic Na(THP)2(S) (?13) displays a chain structure. The B-C1 distances [154.5(2) for 11, 148.8(8) for 12, and 150.8(4) pm for 13], lengthened C1-C2/C1-C5 distances (av) (142.5 for 11, 142.1 for 12, and 143.6 pm for 13), slightly lengthened C3-C4 distances (140.0 for 11, 141.1 for 12, and 143.5 pm for 13), and shortened C2-C3/C4-C5 distances (av) (140.3 for 11, 137.3 for 12, and 137.9 pm for 13) are caused by pi interactions (11 < 12, 13) between the C5 ring and the boryl function. These interactions are weak in the case of the B(NMe2)2 group and quite marked for the B(OCMe2)2 and BMe2 groups. If you are hungry for even more, make sure to check my other article about 33100-27-5. Reference of 33100-27-5

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The receptor properties of a cyclopeptide composed of L-glutamic acid and 3-aminobenzoic acid in an alternating sequence are described, 1H NMR, NOESY NMR, and FT-IR spectroscopic investigations show that this cyclic peptide is relatively flexible in solution. Still, it is able to bind cations by cation-pi interactions. For the n-butyltrimethylammonium iodide complex, for example, an association constant of 300 M-1 has been determined in chloroform. Besides cations, the cyclopeptide is also able to bind certain anions, such as sulfonates or phosphonates, at a second binding site. NMR and FT-IR spectroscopic investigations show that these anions are hydrogen bonded to the peptidic NH groups. Anion complexation results in an increase of the cyclic peptide’s cation affinity by a factor of 103-104. The cyclopeptide- tosylate complex structure in solution was assigned by FT-IR, 1H NMR, and NOESY NMR spectroscopic methods as well as molecular modeling. This structure shows that the drastic increase in cation binding affinity can be correlated with a preorganization of the cyclic peptide by the anion as well as electrostatic interactions between anion and cationic substrates in the final complex. Therefore, the influence of the anions on the complexing behavior of the cyclopeptide can be regarded as an allosteric effect. Association constants of the K+-18-crown-6, Na+-15-crown-5, and n- butyltrimethylammonium cation complexes have been determined by dilution and competitive NMR titrations.

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The cyclothiazeno complex has been prepared by the reaction of sodium fluoride with 2 in acetonitrile solution in the presence of <15-crown-5>.The compound was characterized by its IR spectrum as well as by an X-ray structure determination (3560 observed independent reflexions, R = 0.039).Crystal data: monoclinic, P21/n, Z = 4; a = 1044.8(2); b = 1513.7(2); c = 1363.8(3) pm; beta = 104.33(2) deg.The structure consists of ion pairs, in which the sodium atom is seven-coordinated by the oxygen atoms of the crown ether molecule and by the two fluorine ligands of the (-) unit.The molybdenum atom is a member of the planar MoN3S2 ring; the fluorine atoms are coordinated in trans position to the nitrogen atoms of the cyclothiazeno ring. – Keywords: Fluoro-Chloro-Cyclothiazeno Complex of Molybdenum(VI), Synthesis, IR Spectra, Crystal Structure

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The reaction rate of a catalyzed reaction is faster than the reaction rate of the uncatalyzed reaction at the same temperature.4488-22-6, Name is [1,1′-Binaphthalene]-2,2′-diamine, molecular formula is C20H16N2. In a Article,once mentioned of 4488-22-6, Computed Properties of C20H16N2

Binaphthyldiamino, ethyldiamino and cyclohexyldiamino Schiff bases can catalyze the reaction of epoxides with carbon dioxide in the presence of catalytic amounts of various organic bases to give the corresponding cyclic carbonates in high yields. The simplest binaphthyldiamino Schiff base, derived from the reaction of binaphthyldiamine with salicylaldehyde, gave the highest yield of cyclic carbonate. This catalytic system can be further simplified by use of a phenol instead of the Schiff base to give the corresponding cyclic carbonates in high yields as well. Mechanistic insights were obtained based on a deuterium labeling experiment, The reaction of aziridines with CO2 and epoxide with CS2 were also examined under the same reaction conditions. Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2004.

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Chiral Catalysts,
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