کد مقاله کد نشریه سال انتشار مقاله انگلیسی نسخه تمام متن
503577 863783 2006 13 صفحه PDF دانلود رایگان
عنوان انگلیسی مقاله ISI
A programmable optimization environment using the GAMESS-US and MERLIN/MCL packages. Applications on intermolecular interaction energies
موضوعات مرتبط
مهندسی و علوم پایه شیمی شیمی تئوریک و عملی
پیش نمایش صفحه اول مقاله
A programmable optimization environment using the GAMESS-US and MERLIN/MCL packages. Applications on intermolecular interaction energies
چکیده انگلیسی

The Merlin/MCL optimization environment and the GAMESS-US package were combined so as to offer an extended and efficient quantum chemistry optimization system, capable of implementing complex optimization strategies for generic molecular modeling problems. A communication and data exchange interface was established between the two packages exploiting all Merlin features such as multiple optimizers, box constraints, user extensions and a high level programming language. An important feature of the interface is its ability to perform dimer computations by eliminating the basis set superposition error using the counterpoise (CP) method of Boys and Bernardi. Furthermore it offers CP-corrected geometry optimizations using analytic derivatives. The unified optimization environment was applied to construct portions of the intermolecular potential energy surface of the weakly bound H-bonded complex C6H6–H2O by utilizing the high level Merlin Control Language. The H-bonded dimer HF–H2O was also studied by CP-corrected geometry optimization. The ab initio electronic structure energies were calculated using the 6-31G** basis set at the Restricted Hartree–Fock and second-order Moller–Plesset levels, while all geometry optimizations were carried out using a quasi-Newton algorithm provided by Merlin.Program summaryTitle of program: MERGAMCatalogue identifier:ADYB_v1_0Program summary URL:http://cpc.cs.qub.ac.uk/summaries/ADYB_v1_0Program obtainable from: CPC Program Library, Queen's University of Belfast, N. IrelandComputer for which the program is designed and others on which it has been tested: The program is designed for machines running the UNIX operating system. It has been tested on the following architectures: IA32 (Linux with gcc/g77 v.3.2.3), AMD64 (Linux with the Portland group compilers v.6.0), SUN64 (SunOS 5.8 with the Sun Workshop compilers v.5.2) and SGI64 (IRIX 6.5 with the MIPSpro compilers v.7.4)Installations: University of Ioannina, GreeceOperating systems or monitors under which the program has been tested: UNIXProgramming language used: ANSI C, ANSI Fortran-77No. of lines in distributed program, including test data, etc.:11 282No. of bytes in distributed program, including test data, etc.: 49 458Distribution format: tar.gzMemory required to execute with typical data: Memory requirements mainly depend on the selection of a GAMESS-US basis set and the number of atomsNo. of bits in a word: 32No. of processors used: 1Has the code been vectorized or parallelized?: noNature of physical problem: Multidimensional geometry optimization is of great importance in any ab initio calculation since it usually is one of the most CPU-intensive tasks, especially on large molecular systems. For example, the geometric and energetic description of van der Waals and weakly bound H-bonded complexes requires the construction of related important portions of the multidimensional intermolecular potential energy surface (IPES). So the various held views about the nature of these bonds can be quantitatively tested.Method of solution: The Merlin/MCL optimization environment was interconnected with the GAMESS-US package to facilitate geometry optimization in quantum chemistry problems. The important portions of the IPES require the capability to program optimization strategies. The Merlin/MCL environment was used for the implementation of such strategies. In this work, a CP-corrected geometry optimization was performed on the HF–H2O complex and an MCL program was developed to study portions of the potential energy surface of the C6H6–H2O complex.Restrictions on the complexity of the problem: The Merlin optimization environment and the GAMESS-US package must be installed. The MERGAM interface requires GAMESS-US input files that have been constructed in Cartesian coordinates. This restriction occurs from a design-time requirement to not allow reorientation of atomic coordinates; this rule holds always true when applying the COORD = UNIQUE keyword in a GAMESS-US input file.Typical running time: It depends on the size of the molecular system, the size of the basis set and the method of electron correlation. Execution of the test run took approximately 5 min on a 2.8 GHz Intel Pentium CPU.

ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Computer Physics Communications - Volume 175, Issue 5, 1 September 2006, Pages 359–371
نویسندگان
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